WO2019013014A1 - 快適度表示装置 - Google Patents
快適度表示装置 Download PDFInfo
- Publication number
- WO2019013014A1 WO2019013014A1 PCT/JP2018/024709 JP2018024709W WO2019013014A1 WO 2019013014 A1 WO2019013014 A1 WO 2019013014A1 JP 2018024709 W JP2018024709 W JP 2018024709W WO 2019013014 A1 WO2019013014 A1 WO 2019013014A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- value
- comfort
- area
- user
- environmental data
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Ceased
Links
Images
Classifications
-
- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06T—IMAGE DATA PROCESSING OR GENERATION, IN GENERAL
- G06T11/00—Two-dimensional [2D] image generation
- G06T11/20—Drawing from basic elements
- G06T11/26—Drawing of charts or graphs
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F11/00—Control or safety arrangements
- F24F11/50—Control or safety arrangements characterised by user interfaces or communication
- F24F11/52—Indication arrangements, e.g. displays
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F11/00—Control or safety arrangements
- F24F11/50—Control or safety arrangements characterised by user interfaces or communication
- F24F11/52—Indication arrangements, e.g. displays
- F24F11/523—Indication arrangements, e.g. displays for displaying temperature data
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F11/00—Control or safety arrangements
- F24F11/62—Control or safety arrangements characterised by the type of control or by internal processing, e.g. using fuzzy logic, adaptive control or estimation of values
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F11/00—Control or safety arrangements
- F24F11/62—Control or safety arrangements characterised by the type of control or by internal processing, e.g. using fuzzy logic, adaptive control or estimation of values
- F24F11/63—Electronic processing
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F11/00—Control or safety arrangements
- F24F11/62—Control or safety arrangements characterised by the type of control or by internal processing, e.g. using fuzzy logic, adaptive control or estimation of values
- F24F11/63—Electronic processing
- F24F11/64—Electronic processing using pre-stored data
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F2120/00—Control inputs relating to users or occupants
Definitions
- the present invention relates to a configuration of a comfort degree display device that displays environmental data in a conditioned space and the degree of comfort of the user.
- this invention makes it easy to grasp
- an object of this invention is to enable management of an appropriate air conditioning installation.
- the comfort degree display device includes: a preference storage unit storing a user's preference for an air conditioning environment; an attribute storage unit storing an attribute of the user; and an environmental data value acquiring an environmental data value representing a condition of the air conditioning space Based on the acquisition unit, the preference of the user stored in the preference storage unit, the attribute of the user stored in the attribute storage unit, and the environmental data value of the air-conditioned space acquired by the environmental data value acquisition unit
- a degree-of-comfort value generating unit for generating a degree-of-comfort value indicating the degree of comfort of the user in the air-conditioned space; a degree of comfort value for the user generated by the degree-of-comfort value generating unit;
- a display data generation unit that generates display data by combining environmental data values of the air-conditioned space, and a display unit that displays the display data.
- the present invention displays the comfort level value and the environmental data value in an overlapping manner, the air conditioning manager can easily grasp the relevance between the comfort level and the environmental data. For this reason, the present invention enables the air conditioning manager to properly adjust the air conditioning equipment.
- the comfort degree display device of the present invention further includes a comfort degree value basic statistic representing the comfort degree value of the user generated by the comfort degree value generation unit, and the air conditioning space acquired by the environmental data value acquisition unit. It may have a basic statistics calculation part which calculates environmental data value basic statistics which represent environmental data values. Further, the display data generation unit may be any one or more of the user comfort value, the environmental data value of the air-conditioned space, the comfort value basic statistic, and the environmental data value basic statistic. And may be combined to generate display integrated data, and the display unit may display the display integrated data.
- the comfort value basic statistic calculated by the basic statistic calculation unit has the following groups (1) to (5), (1) time average value or space average value of the user comfort value (2) time median or space median value of the user comfort value (3) time maximum value or space maximum of the user comfort value Value (4) Time minimum value or space minimum value of the user's comfort level value (5) time mode or spatial mode value of the user's level of comfort value
- the environmental data value calculated by the basic statistic calculation unit The basic statistics have the following groups (6) to (10), (6) time average value or space average value of environmental data values of the air conditioned space (7) median time or median value of environmental data values of the air conditioned space (8) maximum time value of environmental data values of the air conditioned space Or space maximum value (9)
- the time minimum value or space minimum value of the environmental data value of the said air conditioning space It is good also as a time mode or space mode value of the environmental data value of the said air conditioning space.
- the display data generation unit is configured to: the comfort degree value of the user; an environmental data value of the air conditioned space; and the comfort degree basic statistic of the group of (1).
- Any one or more of the environmental data value basic statistics of the group of (6), or the comfort value of the user, the environmental data value of the air conditioned space, and the group of the (2) Any one or more of the comfort value basic statistic and the environmental data value basic statistic of the group (7), or the comfort value of the user, and the environmental data value of the air-conditioned space
- the air conditioning manager can grasp the tendency of the relationship between the comfort level and the environmental data, and the air conditioning facility You can easily determine the need for replacement, additional installation, etc.
- the comfort level basic statistics and the environmental data basic statistics are superimposed and displayed, the air conditioning manager can grasp the tendency of the spatial relationship between the comfort level and the environmental data, and within the air conditioning space It is easy to determine the necessity for replacement of air conditioning equipment in a specific area or for additional installation of building equipment such as partitions.
- the comfort value basic statistics and environmental data values basic statistics use the comfort value and the average value, median, maximum value, minimum value, mode which is an index representing the data group of environmental data values The data group can be comprehensively grasped.
- the comfort degree display device further includes a comfort degree value basic statistic representing the comfort degree value of the user generated by the comfort degree value generation unit, and the air conditioning acquired by the environmental data value acquisition unit. It may have a basic statistic calculation unit that calculates an environmental data value basic statistic that represents environmental data values in space. Further, the display data generation unit generates statistics display data by combining any one of the comfort level basic statistics and any one of the environmental data value basic statistics. The display unit may display the statistic display data.
- the display data generation unit is configured to select one of two values included in the comfort degree basic statistics of the group (1) and the group of the (6). And one of two values included in the environmental data value basic statistic of the above, or one of two values included in the comfort degree basic statistic of the group (2); And any one of two values included in the environmental data value basic statistic of the group or any one of two values included in the comfort value basic statistic of the group of (3); Either one of two values included in the environmental data value basic statistic of the group of (8) or any one of two values included in the comfort value basic statistic of the group of (4) One and the above (9) Either one of two values included in the environmental data value basic statistic of the loop, or one of two values included in the comfort value basic statistic of the group of (5),
- the statistical data display data may be generated by combining one of the two values included in the environmental data value basic statistic of the group of 10).
- the air conditioning manager can grasp the tendency of the relationship between the comfort degree and the environmental data, and replace or add the air conditioning facility. You can easily determine the need for
- the comfort value basic statistics and environmental data values basic statistics the comfort value, average value, median, maximum value, minimum value, mode which is an index representing the data group of environmental data values By using it, it is possible to comprehend the data group comprehensively.
- the air conditioning space is further constituted by a plurality of areas, and an area information storage unit for storing configuration information of each area of the air conditioning space; and each information stored in the area information storage unit
- An area environmental data value acquiring unit for acquiring area environmental data values representing the condition of the air conditioned space of each area with reference to area configuration information, the user preference stored in the preference storage unit, and An area comfort generating area comfort value indicating comfort of the user in the area based on the attribute of the user stored in the attribute storage unit and the area environmental data value acquired by the area environmental data value acquiring unit
- a degree value generation unit, the area comfort degree value of the user generated by the area comfort degree value generation unit, and the area environmental data acquired by the area environmental data value acquisition unit If it may be a have the area display data generating unit that combined to produce an area display data.
- the display unit may display one or more of the area display data.
- an area comfort degree basic statistic representing the area comfort degree value of the user generated by the area comfort degree value generation unit and the area environmental data value acquisition unit
- An area basic statistic calculation unit may be provided to calculate an area environmental data value basic statistic representing the acquired area environmental data value.
- the area display data generation unit is any one or more of the area comfort value of the user, the area environment data value, the area comfort value basic statistic, and the area environment data value basic statistic. And may be synthesized to generate area display integrated data.
- the display unit may display one or more of the area display integrated data.
- the area comfort degree basic statistic calculated by the area basic statistic calculation unit has the following groups (1) to (5), (1) time average value or space average value of the area comfort value of the user (2) time median or space median value of the area comfort value of the user (3) time maximum value of the area comfort value of the user Or the space maximum value (4) the time minimum value or the space minimum value of the area comfort value of the user (5) the time mode or space mode of the area comfort value of the user
- the area environmental data value basic statistic to be calculated has the following groups (6) to (10): (6) time average value or space average value of the area environmental data value (7) time median value or space median value of the area environmental data value (8) time maximum value or space maximum value of the area environmental data value (9 The time minimum value or the space minimum value of the area environmental data value (10) The time mode value or the space mode value of the area environmental data value may be used.
- an area comfort degree basic statistic representing the area comfort degree value of the user generated by the area comfort degree value generation unit and the area environmental data value acquisition unit An area basic statistic calculation unit may be provided to calculate an area environmental data value basic statistic representing the acquired area environmental data value.
- the area display data generation unit generates area statistics display data by combining any one of the area comfort value basic statistics and any one of the area environmental data values basic statistics. You may Further, the display unit may display one or more of the area statistic display data.
- the area display data generation unit is configured to select one of two values included in the area comfort degree basic statistic of the group of (1) and the group of (6). And one of two values included in the area environmental data value basic statistic of the above, or one of two values included in the area comfort value basic statistic of the group (2); Either of two values included in the area environmental data value basic statistic of the group of (7), or any of two values included in the area comfort value basic statistic of the group of (3).
- one of two values included in the area environmental data value basic statistic of the group of (8), or included in the area comfort value basic statistic of the group of (4) Either one of the two values and one of the two values included in the area environmental data value basic statistic of the group of (9) or the area comfort value of the group of (5)
- the area statistic is displayed by combining one of two values included in the basic statistic and one of two values included in the area environmental data value basic statistic of the group of (10). Data may be generated.
- the air conditioning manager can grasp the tendency of the relationship between the comfort degree and the environmental data for each area, and for each area It is possible to easily judge the necessity for replacement or additional installation of air conditioners. Also, as the area comfort value basic statistics and area environmental data values basic statistics, the comfort value, average value, median, maximum value, minimum value, mode which is an index representing a data group of environmental data values The data group can be comprehensively grasped by using the value.
- the comfort level display device of the present invention may further include an area information input unit for inputting configuration information of the area of the air-conditioned space to the area information storage unit.
- the comfort level display device of the present invention may further include a power information acquisition unit that acquires a power data value used for the device in the air-conditioned space.
- the display data generation unit acquires the user comfort level value generated by the comfort level value generation unit, the environmental data value of the air-conditioned space acquired by the environmental data value acquisition unit, and the power information acquisition unit
- the display data may be generated by combining with the power data value.
- the air conditioning manager can grasp the relationship between the power consumption, the degree of comfort, and the environmental data value.
- the comfort degree display device further includes an area basic statistic calculation unit for calculating an area comfort degree basic statistic representing the area comfort degree value of the user generated by the area comfort degree value generation unit;
- An area comfort degree evaluation unit may be provided which compares the area comfort degree basic statistic calculated by the area basic statistic calculation unit with a predetermined threshold value and outputs an area comfort degree evaluation.
- the area display data generation unit includes the area comfort value of the user generated by the area comfort value generation unit, the area environmental data value acquired by the area environmental data value acquisition unit, and the area comfort evaluation unit.
- the area display data may be generated by combining the area comfort degree evaluations output by
- the comfort level display device of the present invention further includes a biometric information storage unit for storing biometric information of the user, and a user condition acquisition unit for acquiring the current condition amount of the user and the current position of the user.
- the comfort degree value generation unit may include the preference of the user stored in the preference storage unit, the attribute of the user stored in the attribute storage unit, and an environmental data value of the air-conditioned space acquired by the environmental data value acquisition unit. And comfort of the user in the air-conditioned space based on the biometric information of the user stored in the biometric information storage unit, the current state amount of the user acquired by the user status acquisition unit, and the current position of the user It is also possible to generate a comfort value indicating the sex.
- the comfort degree display device of the present invention further complements the comfort degree value of the user, which is a discrete value generated by the comfort degree value generation unit, to calculate a continuous value for time or space, and the environmental data value acquisition unit It may have a complementation part which complements the environmental data value of the above-mentioned air-conditioning space which is a discrete value which acquired the, and computes a continuous value to time or space.
- the display data generation unit combines and combines either one of time or space continuous values of the user's comfort level with either of time or space continuous values of environmental data values of the air-conditioned space Display data may be generated, and the display unit may display the continuous display data.
- the display is easy to view, and the air conditioning manager can more easily understand the relationship between the comfort and the environmental data.
- the comfort degree display device of the present invention may further include an abnormality detection unit that detects an abnormality when the comfort degree value of the user is not within the comfort limit range, and outputs abnormal data.
- the display data generation unit generates abnormality display data by combining the abnormality data output from the abnormality detection unit, the comfort level value of the user, and the environmental data value of the air-conditioned space, and the display unit The abnormality display data may be displayed.
- the comfort degree display device of the present invention may further include an abnormality detection unit that detects an abnormality and outputs abnormality data when the comfort degree value of the user is not within the comfort limit range.
- the display data generation unit may be configured to determine the comfort level of the user and the environmental data value of the air-conditioned space so that the comfort level of the user whose abnormality is detected may be distinguished from the comfort level of another user.
- the abnormality identification display data may be generated, and the display unit may display the abnormality identification display data.
- the air conditioning manager notices the presence of the offender at an early stage, and the air conditioning system can be adjusted at an early stage.
- the preference storage unit stores the preference for the air conditioning environment of the type-based reference user.
- the attribute storage unit stores the attribute of the standard user classified by type, and the preference of the standard user classified by type stored in the preference storage unit and the type stored in the attribute storage unit for each area of the air conditioning space
- the comfort level value of the standard user classified by type may be generated based on the attribute of the separate standard user and the environmental data value of the air-conditioned space acquired by the environmental data value acquisition unit.
- the comfort degree display device of the present invention may further include a type-wise recommended area generation unit that designates an area where the degree-of-comfort value of the type-based reference user is within a predetermined range as the type-wise recommended area.
- the display data generation unit combines the user comfort level value generated by the comfort level value generation unit, the type classified recommended area, and the environmental data value of the air-conditioned space, and displays classified type classified area data
- the display unit may generate and display the recommended area display data classified by type.
- the recommended area is displayed according to the type of heat type, cold type, etc., so that the user can be encouraged to view the display and move to his / her favorite location. For example, when a user may be seated at any place as in a free address office, the overall comfort and productivity can be improved if each person is seated according to his / her preference.
- the comfort level display device of the present invention may further include a destination display unit for displaying the type-by-type recommendation area in projection mapping or augmented reality.
- the user can be easily moved, and the overall comfort and productivity can be further improved.
- the comfort degree display device further, for each area of the air conditioning space, the preference of the user stored in the preference storage unit, the attribute of the user stored in the attribute storage unit, and acquisition of the environmental data value
- User's comfort level value is generated on the basis of the environmental data value of the air-conditioned space acquired by the unit, and the user's recommendation level area is designated as a user-specific recommendation area, wherein the user comfort level value is in a predetermined range You may have a part.
- the display data generation unit combines the user comfort degree value generated by the comfort degree value generation unit, the user-by-user recommendation area, and the environmental data value of the air-conditioned space, and displays the user-by-user recommendation area display data It may be generated.
- the display unit may display the user-by-user recommendation area display data.
- the user since the user automatically recommends where to go in the air-conditioned space in consideration of the user's preference and the user's attributes, the user can check the display etc. It can be easily moved to a comfortable position.
- the comfort level display device of the present invention may further include a user state acquisition unit that acquires the current state amount of the user and the current position of the user.
- the comfort degree value generation unit may include the preference of the user stored in the preference storage unit, the attribute of the user stored in the attribute storage unit, and an environmental data value of the air-conditioned space acquired by the environmental data value acquisition unit. And a current comfort value indicating the current comfort of the user based on the current state amount of the user acquired by the user state acquisition unit and the current position of the user.
- the comfort degree display device of the present invention further changes the state quantity of the user from the current state quantity until the comfort degree value of the user falls within a predetermined range when the current comfort degree value is not within the predetermined range.
- the comfort value of the user is repeatedly generated based on the preference of the user, the attribute of the user, the environmental data value of the air conditioned space, and the current position of the user, and the comfort value of the user is You may have a recommendation action production
- the display data generation unit combines the current comfort value of the user generated by the comfort value generation unit, an environmental data value of the air-conditioned space, and the recommended action generated by the recommended action generation unit. Recommended action display data may be generated.
- the display unit may display the recommended action display data.
- the comfort degree display device includes: a preference storage unit storing preferences for the air conditioning environment of the standard user by type; an attribute storage unit storing the attributes of the standard user by type; and environmental data values representing the condition of the air conditioning space
- An environmental data value acquiring unit for acquiring the information, a preference of the standard user by type stored in the preference storage unit, and an attribute of the standard user by type stored in the attribute storage unit for each area of the air conditioning space;
- the comfort level value of the standard user classified by type is generated based on the environmental data value of the air conditioned space acquired by the environmental data value acquisition unit, and the area where the comfort degree value of the standard user classified by type is within a predetermined range is typed
- the recommended area is displayed according to the type of heat type, cold type, etc., so that the user can be encouraged to view the display and move to his / her favorite location.
- the comfort degree display device includes: a preference storage unit storing a user's preference for an air conditioning environment; an attribute storage unit storing an attribute of the user; and an environmental data value acquiring an environmental data value representing a condition of the air conditioning space
- a user-specific recommended area generation unit that generates the user's comfort level value based on the environmental data values and specifies an area where the user's comfort level value is within a predetermined range as the user-specific recommended area;
- a display data generation unit that combines an area and environmental data values of the air-conditioned space to generate user-specific recommended area display data, and a display unit that displays the user-specific recommended area display data And wherein the door.
- the user can automatically move to a comfortable position without confirming the display etc., since the user automatically recommends which place in the air-conditioned space the user should go to.
- the present invention facilitates understanding of comfort and relevance to environmental data, and enables appropriate management of air conditioning equipment.
- FIG. 29 is a display example of the comfort degree display device shown in FIG. 28 (an example in which a temperature distribution in an air conditioned space, a current comfort degree value at a current position, and a recommended action are displayed). It is a functional block diagram which shows the structure of the comfort degree display apparatus in 11th Embodiment.
- FIG. 31 shows an example of the recommended area display of the comfort level display device (an example of displaying the temperature distribution in the air-conditioned space, the distribution of comfort level, and the recommended area according to type). It is a functional block diagram which shows the structure of the comfort degree display apparatus in 12th Embodiment. It is a functional block diagram which shows the structure of the comfort degree display apparatus in 13th Embodiment. It is a flowchart which shows operation
- the comfort level display device 100 includes a preference storage unit 101, an attribute storage unit 102, an environmental data value acquisition unit 103, a comfort level value generation unit 104, and display data generation.
- a section 105 and a display section 106 are included.
- the comfort degree display device 100 can be realized by the general-purpose computer 10 shown in FIG.
- the general-purpose computer 10 includes a CPU 21 that performs information processing, a ROM 22 and a RAM 23 that temporarily store data during information processing, and a hard disk drive (HDD) that stores programs and user data.
- 24 includes a mouse 25 provided as input means, a keyboard 26, and a display 27 provided as a display device.
- the CPU 21, the ROM 22, the RAM 23 and the HDD 24 are connected by a data bus 30.
- the mouse 25, the keyboard 26 and the display 27 are connected to the data bus 30 via an input / output controller 28.
- a network controller 29 provided as a communication means is connected to the data bus 30.
- the environmental data value acquiring unit 103, the comfort degree value generating unit 104, and the display data generating unit 105 of the comfort degree display device 100 are realized by the cooperative operation of the hardware of the general-purpose computer 10 shown in FIG. Ru.
- the preference storage unit 101 and the attribute storage unit 102 are realized by the HDD 24 of the general-purpose computer 10 shown in FIG.
- the display unit 106 is realized by the display 27.
- the preference storage unit 101 and the attribute storage unit 102 may be realized by the RAM 23.
- the preference storage unit 101 and the attribute storage unit 102 may be realized by using an external storage unit via a network.
- the preference storage unit 101 stores the preference for the air conditioning environment of the user.
- the preference for the air-conditioned environment is, for example, "hot heat” as a preference for temperature, “cold”, “chilliness” which is a preference for temperature and wind speed, “dry skin” which is a preference for humidity and the like.
- the preference storage unit 101 stores a user preference database 901 as shown in FIG. As shown in FIG. 3, in the user preference database 901, data of the user name, user ID number, and whether the user falls under each item of “Heat”, “Cold”, “Coldiness”, and “Dry Skin”. Are linked. In FIG. 3, “o” indicates that the item corresponds to the corresponding item, and "-” indicates that the item does not correspond to the corresponding item.
- the attribute storage unit 102 stores user attributes.
- the attributes of the user are, for example, the user's age, gender, height, weight, body fat percentage, seat position, and the like.
- the attribute storage unit 102 stores a user attribute database 902.
- the user name, the user ID number, and attribute information such as the age, sex, height, weight, body fat percentage, and seat position of the user are linked.
- the seating position is determined by the column names of the office desk 41 and the chairs 42 and It is displayed in combination with the column number. For example, in the case of "A-1", it indicates that the seat position is row A.
- the environmental data value acquisition unit 103 acquires environmental data values indicating the condition of the air-conditioned space 40 shown in FIG. 7.
- the environmental data value is, for example, a value such as temperature, humidity, or wind speed in the air-conditioned space 40.
- the environmental data value acquisition unit 103 acquires each environmental data value by various sensors such as a temperature sensor, a humidity sensor, and a wind speed sensor.
- the degree-of-comfort value generation unit 104 determines the preference of the user stored in the preference storage unit 101, the attribute of the user stored in the attribute storage unit 102, and the environmental data value of the air-conditioned space 40 acquired by the environmental data value acquisition unit 103. And a comfort value indicative of the user's comfort in the conditioned space 40 is generated.
- the degree-of-comfort value generation unit 104 generates a degree-of-comfort value according to the following equation (1) using PMV, which is an index indicating comfort.
- Comfort value ⁇ ⁇ PMV + ⁇ ⁇ F ⁇ ⁇ R ⁇ (1)
- the degree of comfort value indicates that 0 is neutral, +1 is slightly warm, +2 is warm, and +3 is hot, as in PMV. Also, the degree of comfort indicates that -1 is somewhat cool, -2 is cool and -3 is cold.
- the PMV is a comfort index that indicates whether a human feels warm or cold with "a numerical value according to the 7-point scale". PMV takes into consideration six physical factors of temperature, humidity, wind speed and radiation temperature, and a combination of six factors on the human side of clothing and momentum as factors affecting the thermal comfort of the human body. Calculated by the theoretical formula (Formula (2) below).
- the four physical elements values acquired by the environmental data value acquisition unit 103 are used.
- the amount of clothes and the amount of exercise are the standard amounts of clothes and the amount of exercise at the time of office work. The amount of clothes may be determined by measuring the temperature of the skin and the temperature of the clothes with a thermo camera and estimating the temperature difference.
- PMV (0.303e ⁇ 0.036M + 0.028L) ⁇ L (2)
- L is the heat load (W / m 2 ) of the human body
- M is the metabolic amount (W / m 2 ).
- PMV indicates that 0 is neutral, +1 is slightly warm, +2 is warm and +3 is hot. Also, PMV indicates that -1 is somewhat cool, -2 is cool and -3 is cold.
- the recommended range of PMV values according to ISO is -0.5 ⁇ PMV ⁇ 0.5.
- F is the influence degree of preference information
- R is the influence degree of attribute information.
- the degree of influence F of preference information and the degree of influence R of attribute information are calculated as in the following formulas (3) and (4), respectively.
- F a ⁇ F 1 + b ⁇ F 2 +... (3)
- R p ⁇ R 1 + q ⁇ R 2 +... (4)
- the degree of influence F of preference information is calculated based on one or more elements included in the preference information.
- R 1 , R 2 ,... Indicate the degree of each element of the user's attributes such as “age”, “sex”, “height”, “weight”, “body fat percentage”, “seat position”, etc. It is a numerical value shown.
- the influence degree R of the attribute information is calculated based on one or more elements included in the attribute information. Further, a, b, ..., p, q, ... are coefficients.
- SET * Standard new Effective Temperature
- PMV Greenwich temperature
- SET * based on air temperature, humidity, air flow, radiant heat, and amount of clothes, comfort is expressed at the same temperature as in the case of 50% relative humidity without air flow.
- wet bulb black ball temperature WBGT effective temperature ET, new effective temperature ET * , OUT_SET * , action temperature OT, wet action temperature HOT, standard wet action temperature SHOT, corrected wet action temperature HOTV, corrected new effective temperature ETV, comprehensive Comfortable based on effective temperature ETU, heat stress index HSI, discomfort index THI, thermal sensation index TSI, PET, ETFe, UTCI, average radiation temperature MRT, t * mrt , OUT_MRT, wind cooling index WCI, correction effective temperature CET etc.
- a degree value may be generated.
- Wet bulb black bulb temperature WBGT is an experimental formula created for heat stroke prevention. In addition to air temperature and humidity, air flow and radiation are also considered in the wet bulb black bulb temperature WBGT.
- the wet bulb black bulb temperature WBGT is calculated by the following equation (5).
- WBGT (outdoor) 0.7Tw + 0.2Tg + 0.1T (5)
- T dry bulb temperature (° C.)
- Tw natural wet bulb temperature (° C.)
- Tg black bulb temperature (° C.)
- Tw exposed natural wet bulb temperature (° C.).
- the effective temperature ET is the temperature at the time of no wind, with a relative humidity of 100% giving the same thermal sensation as the real environment.
- the new effective temperature ET * is an index based on a thermal equilibrium equation that can comprehensively evaluate air temperature, humidity, air flow, radiation, clothing, and metabolism.
- the new effective temperature ET * is a temperature in consideration of the thermoregulatory function by perspiration according to the two-node model.
- the relative humidity of the standard environment is 50%.
- the new standard effective temperature SET * assumes 50% relative humidity and a wind speed of 0.135 m / s and a metabolic rate M (met) as a standard environment.
- the action temperature OT is an index considering only temperature and radiation.
- the action temperature OT is a weighted average value of the dry bulb temperature T and the average radiation temperature Tr.
- the action temperature OT is calculated by the following equation (7).
- OT (h c ⁇ T + h r * Tr) / (h c + h r ) (7)
- T dry bulb temperature (° C.)
- Tr average radiation temperature (° C.)
- h c convection heat transfer coefficient (W / ° C. m 2 )
- h r radiation heat transfer coefficient (W / ° C. m 2 ) .
- the wet working temperature HOT is an index that enables evaluation of the influence of humidity on the working temperature OT.
- the wet action temperature HOT represents the temperature at a relative humidity of 100% where the amount of heat loss from the human body placed in the actual thermal environment is equal to the amount of heat loss due to transpiration from the skin.
- the effect of air flow is incorporated into the wet action temperature HOT using a standard wind speed (0.1 m / s).
- the standard wet action temperature SHOT is based on an environment of standard clothing volume (0.6 clo) and standard relative humidity (100%).
- the modified wet action temperature HOTV is an index that can express the temperature conversion value of air flow, radiation, and humidity by the thermal wind field (TVF), the effective radiation field (ERF), and the reduced-effect humidity field (RHF).
- the corrected wet action temperature HOTV is calculated by the following equation (8).
- the modified wetting temperature HOTV does not include the effects of solar radiation and conduction.
- HOTV T + (TVF / K tv ) + (ERF / K tv ) + (RHF / K tv ) (8)
- T dry bulb temperature (° C.)
- K tv wet human body total heat transfer coefficient (W / ° C. m 2 ).
- the modified new effective temperature ETV is an index obtained by converting HOTV based on 100% relative humidity to 50% relative humidity.
- the modified new effective temperature ETV is defined using the effective humidity field (EHF) instead of the reduced-effect humidity field (RHF).
- EHF effective humidity field
- the corrected new effective temperature ETV is expressed by the following equation (9).
- ETV T + (TVF / h v ) + (ERF / h v ) + (EHF / h v ) (9)
- T dry bulb temperature (° C.)
- h o reference convective heat conductivity (W / ° C. m 2 )
- h r radiant heat transfer coefficient (W / ° C. m 2 )
- h v h o ⁇ F clo + h r x Fcl
- Fclo conduction efficiency of standard clothes (ND)
- Fcl conduction efficiency of clothes (ND).
- the total effective temperature ETU is an index that incorporates the effects of solar radiation and conduction and is applicable to both outdoor and non-uniform thermal environments.
- the total effective temperature ETU is expressed by the following equation (10).
- ETU t ao + ( ⁇ NUAT Fi / h u ) + ( ⁇ TV Fi / h u ) + ( ⁇ ERFLi / h u) + ( ⁇ TVFri / h u) + ( ⁇ ERFSi / h u) + ( ⁇ EHFi / h u) + ( ⁇ TVFei / h u) + ( ⁇ SECFj / h u) ⁇ (10)
- t ao representative temperature (° C.)
- NUATFi non-uniform temperature field (W / m 2 ) representing the effect of the difference between the representative temperature and the temperature around the site i
- TVFi thermal heat representing the effect of wind speed on the human body Wind speed field (W / m 2 )
- the heat stress index HSI is an index focusing on water evaporation in the human body.
- the heat stress index HSI is determined from the thermal equilibrium equation of the human body assuming that the skin temperature is 35 ° C.
- the heat stress index HSI is represented by the following equation (11).
- HIS (%) (E / Emax) x 100 ... (11)
- E Evaporative radiation amount (W / m 2 ) necessary for the human body to maintain heat balance
- Emax Maximum possible evaporative heat radiation amount (W / m 2 ) when the human body is completely wet.
- the discomfort index THI is a subjective empirical index that can comprehensively evaluate the temperature and humidity.
- Discomfort Index The THI is 70 and 10% of people feel the current environment offensive.
- Discomfort Index The THI is 75 and 50% of people feel the current environment offensive.
- Discomfort Index The THI is 80 and 100% of people feel the current environment offensive.
- the discomfort index THI is calculated by the following equation (12) or equation (13).
- THI 0.72 (Tv + Tw) +40.6... (12)
- THI 0.81 T + 0.01 RH (0.99 T-14.3) + 46.3 (13)
- T dry bulb temperature (° C.)
- Tv wet bulb temperature (° C.)
- RH relative humidity (%).
- PET is an index developed from PMV and is widely used in Europe. PET is an integrated representation of the effects of temperature, radiation, wind speed, and humidity, based on the heat balance of the human body.
- ETFe is an index that takes into consideration temperature difference, wind speed, humidity, long wavelength radiation outdoors, solar radiation, as well as the difference in posture and the surface temperature of the substance in contact.
- the thermal conductivity excluding each effective field is a function of wind speed.
- the temperature change due to solar radiation, which should be independent of the wind speed is affected by the wind speed. ETFe is calculated by the following equation (14).
- EFTe T + (TVF hta / h fL) + (ERF htaL / h fL) + (ECF hta / h fL ) + (EHF ETFe / h fL ) + (ERF htaS / h fL ) ⁇ (14)
- T dry bulb temperature (° C.)
- TVF hta thermal wind velocity field (W / m 2 ) related to convective heat transfer
- ERF hta L long wavelength effective radiation field (W / M 2 )
- ECF hta effective conduction field (W / m 2 ) representing the influence of conduction on the contact surface with the human body
- EHF ET Fe effective humidity field (W / m 2 ) representing the influence of humidity
- ERF htaS Short wavelength effective radiation field (W / m 2 )
- h fL Radiant heat transfer coefficient (W /
- UTCI is an index proposed by the International Society of Living Meteorology. UTCI is expressed by integrating the effects of temperature, radiation, wind speed, and humidity based on heat balance calculation using the UTCI-Fiala MN model. In UTCI, the standard condition is 2.3 MET (4 km / h walking), wind speed 0.5 m / s (observed altitude 10 m), average radiation temperature equivalent to air temperature, relative humidity 50% (air temperature greater than 29 ° C) It is defined as 20 hpa).
- the mean radiation temperature MRT is used as a parameter of radiation when calculating the sensation index.
- Mean radiation temperature MRT refers to an average temperature indication of the peripheral surface obtained by averaging radiant heat received from all directions of the surrounding.
- t i surface temperature of the surface i (° C.)
- ⁇ i form factor of the surface i (ND).
- the average radiation temperature t * mrt is one of the average radiation temperatures considering solar radiation.
- the average radiation temperature t * mrt is calculated by the following equation (16).
- t * mrt [t mrt 4 + f p ⁇ a k ⁇ (I * / ⁇ p ⁇ ⁇ )] 0.25 -273.2 ⁇ (16)
- t mrt average radiation temperature not including direct solar radiation
- f p human body projected area ratio (ND)
- a k absorptivity for short wavelength radiation (ND)
- I * normal surface direct solar radiation
- W / M 2 normal surface direct solar radiation
- ⁇ Stefan-Boltzmann constant (5.67 ⁇ 10 ⁇ 8 (W / m 2 K 4 )).
- OUT_MRT is one of the average radiation temperatures in consideration of solar radiation.
- OUT_SET * is an index in which solar radiation is added by using OUT_MRT for the input term of MRT.
- Wind and cold index WCI is an index used for winter frostbite and hypothermia prevention.
- the coldness index WCI is calculated from the functional equation of the air temperature and the wind velocity as the following equation (17).
- WCI (33-T) x (10. 45 + 10 U 0.5- U) (17)
- T dry bulb temperature (° C.)
- U wind speed (m / s).
- the correction effective temperature CET is an index obtained by adding the radiation effect of the peripheral surface to the effective temperature ET and performing correction.
- a glove thermometer is used instead of the dry bulb thermometer of the effective temperature ET.
- the display data generation unit 105 superimposes two data on the display unit 106 so that the comfort degree value generated by the comfort degree value generation unit 104 and the environmental data value acquired by the environmental data value acquisition unit 103 can be superimposed on each other. Synthesize. Then, the display data generation unit 105 outputs the data obtained by the combination to the display unit 106 as display data.
- the display unit 106 displays the display data input from the display data generation unit 105.
- the display unit 106 is, for example, the display 27 shown in FIG.
- comfort level display device 100 of the present embodiment configured as described above and the display of the display unit 106 will be described with reference to FIGS. 5-7.
- the degree-of-comfort value generation unit 104 reads user preference data from the preference storage unit 101 and user attribute data from the attribute storage unit 102. Further, as shown in step S103 of FIG. 5, the degree-of-comfort value generation unit 104 acquires an environmental data value from the environmental data value acquisition unit 103. Then, as shown in step S104 of FIG. 5, the degree-of-comfort value generation unit 104 generates the degree-of-comfort value of the user using the equations (1) to (4) described above. As shown in step S105 of FIG.
- the display data generation unit 105 combines the comfort degree value generated by the comfort degree value generation unit 104 with the environmental data value acquired from the environmental data value acquisition unit 103 to display data.
- the generated display data is output to the display unit 106.
- the display unit 106 displays the input display data.
- FIG. 6 shows an example of display on the display unit 106.
- FIG. 6 is a view showing a change in temperature at a specific position in the air-conditioned space 40 shown by the XY plane in FIG. 7 and a change in time of the degree of comfort of the user.
- the air-conditioned space 40 as shown in FIG. 7, the office desk 41 and the chair 42 are disposed on the floor, and the outlet 43 of the air-conditioning facility is disposed on the ceiling.
- the air-conditioned space 40 is partitioned by a partition 44.
- the office desk 41 and the chairs 42 are arranged in three stages from No. 1 to No. 3 in two rows of A row and B row.
- the seat position is represented by [row name-step number], and Point [A-1] shown in FIG.
- FIG. 6 indicates the seat position of row A.
- a solid line T indicating a temporal change in temperature at a seat position of row A in row A in the air-conditioned space 40 shown in FIG. 7 is displayed.
- a dashed line a showing the comfort degree of the standard user A at the seat position of row A in the air conditioned space 40 shown in FIG. 7 and a comfort degree of the cold user B are shown.
- a dashed-dotted line b and a dashed-dotted line c indicating the degree of comfort of the hot user C are displayed.
- the standard user A is neither “hot”, “cold” nor “cold” nor “dry skin”, but “age”, “height”, “weight”, “body fat percentage” etc.
- the cold user B is a female user who is "cold” and “cold” and whose "body weight” and “body fat percentage” are smaller than the company's standard.
- the hot user C is a hot user and a male user whose “body weight” and “body fat percentage” are larger than the standard of the company.
- the comfort values of the temperature indicated by the solid line T, the broken line a, the two-dot chain line b, and the users A, B, C indicated by the one-dot chain line c are discrete values with respect to time. However, in FIG. 6, each discrete value is complemented and displayed as a smooth line. This complementation will be described later as a fourth embodiment.
- the user C with the heat indicated by the alternate long and short dash line c feels warm and not very comfortable, and the comfort value is about +1.
- the user B with a coldness indicated by a two-dot chain line b does not feel hot and feels a cold and comfortable situation, and the comfort value is about 0.
- the standard degree of comfort felt by the user A is about 0.2, which is intermediate between the user B and the user C.
- the user C of the heat indicated by the alternate long and short dash line c feels as a comfortable condition without being hot or cold, and the comfort value is about 0.
- the user B of the coldness indicated by the two-dot chain line b feels cool and not very comfortable, and the comfort value is about -1.
- the standard degree of comfort felt by the user A is about -0.5, which is intermediate between the user B and the user C.
- the manager of the air conditioning facility can grasp the correlation between the change in the degree of comfort value of the users A, B and C and the temperature. Then, for example, when a hot user C is seated at the seat position A-1, the air conditioning manager adjusts the set temperature of the air conditioner so that the temperature of the seat position A-1 becomes slightly lower. be able to. Conversely, when a cold user B is seated at the seat position A-1, the air conditioning manager adjusts the set temperature of the air conditioner so that the temperature of the seat position A-1 becomes slightly higher. can do.
- the comfort level display device 100 sets the comfort level of the user sitting at each seat position at that time on the temperature distribution in the air-conditioned space 40 indicated by the XY plane at a certain time.
- the marks shown can be superimposed and displayed on the display unit 106.
- the office desk 41 and the chair 42 are disposed on the floor, and the air outlet 43 of the air conditioning facility is disposed on the ceiling.
- the air-conditioned space 40 is partitioned by a partition 44.
- a face mark indicating the degree of comfort of the user is displayed. In FIG. 7, the smile mark indicates that the user feels comfortable.
- the smile mark corresponds to the range of the comfort value of the user at the seat position of -0.5 to +0.5.
- the mark of the unpleasant face which is lowered at both ends of the mouth indicates that the user at the seat position feels warm or cool. In other words, the mark of the unpleasant face indicates that the user feels uncomfortable.
- the offensive face mark corresponds to a comfort value above +1.5 or a comfort value below -1.5.
- the mark of the normal face indicates that the user feels somewhat warm or slightly cool in the middle of these. In other words, a normal facial mark indicates that the user feels between comfort and discomfort, not comfort but not discomfort. Normal face marks correspond to comfort values between 0.5 and 1.5, -0.5 to -1.5.
- the air conditioning manager can easily determine which position in the air conditioning space 40 should be adjusted based on the display shown in FIG. 7. For example, when the user at the seat position A-2 is displayed with an unpleasant face and the user is "hot", the air conditioning manager increases the amount of cold air to the vicinity of the seat position A-2 where the user sits.
- Air conditioning settings can be adjusted. For example, the air conditioning manager can make adjustments such as changing the direction of the louver or lowering the temperature setting so that the temperature of the cold air becomes lower. Also, conversely, for example, when the user at the seat position A-2 is "cold” or "cold", the air conditioning manager reduces the amount of cold air to the vicinity of the seat position A-2 where the user sits.
- Air conditioning settings can be adjusted. For example, the air conditioning manager can make adjustments such as changing the direction of the louver or raising the temperature setting so that the temperature of the cold air becomes high.
- the comfort degree display device 100 displays the comfort degree value and the environmental data value on the display unit 106 in a superimposed manner, the air conditioning manager can associate the comfort degree with the environmental data. It can be easily grasped. For this reason, the comfort degree display device 100 according to the present embodiment enables the air conditioning manager to properly adjust the air conditioning equipment.
- the comfort degree display device 200 of the second embodiment will be described with reference to FIGS. 8 and 9. Moreover, the comfort degree display apparatus 250 of 3rd Embodiment is demonstrated, referring FIG.10 and FIG.11. Thereafter, display examples of the comfort degree display devices 200 and 250 will be described with reference to FIGS. 12 to 15.
- a basic statistic calculation unit 207 is added to the comfort degree display device 100 described with reference to FIG. 1.
- the preference storage unit 201, the attribute storage unit 202, the environment data value acquisition unit 203, the comfort value generation unit 204, and the display unit 206, which constitute the comfort degree display device 200, are the comfort degree display devices described with reference to FIG.
- the preference storage unit 101, the attribute storage unit 102, the environmental data value acquisition unit 103, the comfort level value generation unit 104, and the display unit 106 are the same as the ones 100, so the description will be omitted.
- the basic statistic calculation unit 207 calculates the comfort value basic statistic and the environmental data value basic statistic.
- the degree-of-comfort value basic statistic is a basic statistic representing the degree-of-comfort value of the user generated by the degree-of-comfort value generation unit 204.
- the comfort value basic statistic has the following groups (1) to (5). (1) time average value or space average value of user comfort value (2) time median value or space median value of user comfort value (3) time maximum value or space maximum value of user comfort value (4 ) User's comfort value time minimum value or space minimum value (5) User's comfort value time mode value or space mode value
- the environmental data value basic statistic is a basic statistic representing the environmental data of the air-conditioned space 40 acquired by the environmental data value acquisition unit 203.
- the environmental data value basic statistics have the following groups (6) to (10). (6) Temporal average value or spatial average value of environmental data values in air-conditioned space (7) Median time or median value of environmental data values in air-conditioned space (8) Maximum time or spatial maximum value of environmental data values in air-conditioned space Value (9) Temporal minimum value or spatial minimum value of environmental data value in air-conditioned space (10) Temporal mode value or spatial mode value of environmental data value in air-conditioned space
- a time average value is each average value in predetermined periods, such as one day, one week, one month, etc., for example.
- the spatial average value is an average value of the user's comfort level in the block or an average value of environmental data values in the block.
- the air-conditioned space 40 indicated by XY in FIG. 7 is divided into several blocks.
- the average value of the user's comfort degree in each obtained block or the average value of the environmental data value in each block corresponds to the spatial average value. That is, the spatial average value is an average value in a predetermined space.
- the time median and the space median are median values in a predetermined space for a predetermined period, respectively.
- the time maximum value and the space maximum value are respectively maximum values in a predetermined space for a predetermined period.
- the time minimum value and the space minimum value are respectively minimum values in a predetermined space for a predetermined period.
- the temporal mode value and the spatial mode value are modes in a predetermined space for a predetermined period, respectively.
- the average value is a value obtained by adding all data values and dividing the added value by the number of data.
- the mean value is often used as an index that represents the center of the data distribution. However, if the data is close to a normal distribution, the mean value indicates the center of the data distribution, but if the distribution is biased, it may not necessarily indicate the center of the data distribution.
- the median is the middle value when the data is arranged in ascending order.
- the mode is the value that appears most frequently in the data set. When the mean value does not indicate the center of the data distribution, the center of the data distribution may be more accurately grasped by using the median and the mode value.
- the maximum value and the minimum value are indexes indicating the width of the spread of the data value. The maximum value and the minimum value are indexes used when finding singular points in the data.
- the display data generation unit 205 calculates the comfort degree value of the user generated by the comfort degree value generation unit 204, the environmental data value of the air conditioning space 40 acquired by the environmental data value acquisition unit 203, and the basic statistic calculation unit 207 calculates. Display integrated data by combining the comfort value basic statistic representing the user comfort value and any one or more of environmental data value basic statistics representing the environmental data value of the air-conditioned space 40 Generate Then, the display data generation unit 205 outputs the generated display integrated data to the display unit 206. More specifically, the display data generation unit 205 can calculate the time average value, the space average value, the time median value, the space median value, the time maximum value, and the space maximum value of the user's comfort level value calculated by the basic statistic calculation unit 207.
- the basic statistic calculation unit 207 calculates the time average value or the space average value of the comfort value generated by the comfort value generation unit 204 and the time average value of the environmental data value acquired by the environmental data value acquisition unit 203 or An example of calculating the spatial average value will be described.
- the same steps as the operation of the comfort level display device 100 described with reference to FIG. 5 will be briefly described with the same reference numerals as in FIG. 5 attached to each step.
- the degree-of-comfort value generation unit 204 reads the preference and the attribute of the user, and acquires the environmental data value.
- the basic statistic calculation unit 207 calculates the time average value or the space average value of the comfort value of the group (1) of the comfort value basic statistic. Further, the basic statistics calculation unit 207 calculates the time average value or the space average value of the environmental data values of the air conditioning space 40 of the group (6) of the environmental data value basic statistics in step S202 of FIG. 9.
- the display data generation unit 205 calculates the user's degree of comfort value generated by the degree of comfort value generation unit 204 and the environmental data value of the air-conditioned space 40 acquired by the environmental data value acquisition unit 203.
- the time average value or the space average value of the user's comfort level value calculated by the basic statistic calculation unit 207 and any one or more of the time average value or the space average value of the environmental data value of the air conditioning space 40; Are integrated to generate display integrated data, and the generated display integrated data is output to the display unit 206.
- the display unit 206 displays the display integrated data generated by the display data generation unit 205, as shown in step S106 of FIG.
- a display example of the display unit 206 will be described after the description of the comfort level display device 250 of the third embodiment.
- the basic statistic calculation unit 207 calculates the average value.
- the basic statistic calculation unit 207 calculates the median time or the median space of the comfort values of the group (2) of the comfort value basic statistics.
- the basic statistic calculation unit 207 calculates the time intermediate value or the space intermediate value of the environmental data values of the air conditioning space 40 of the group (7) of environmental data value basic statistics.
- the basic statistic calculation unit 207 determines whether the group of comfort value basic statistics (3), (4) or (5) is used.
- the maximum value, the minimum value or the mode value of the comfort value is calculated, and the maximum value of the environmental data value of the group (8), (9) or (10) of environmental data value basic statistics is calculated in step S202 of FIG. Calculate the minimum value or the mode value.
- the other operations are the same as in the case of calculating the average value described above.
- the display part 206 may combine and display the basic statistic from which a comfort degree value and an environmental data value differ.
- the basic statistic calculation unit 207 calculates the time average value or the space average value of the comfort level and the time intermediate value or the space intermediate value of the environmental data values of the air conditioned space 40 and displays them on the display unit 206 You may do so.
- the display data generation unit 255 of the comfort level display device 250 of the third embodiment is a comfort level basic statistic that represents the user's comfort level value calculated by the basic statistic calculation section 257.
- the amount and any one or more of environmental data value basic statistics representative of environmental data values of the air-conditioned space 40 are combined to generate statistic display data and output to the display unit 256.
- the display data generation unit 255 does not combine the user comfort level value generated by the comfort level value generation unit 254 with the environmental data value acquired by the environmental data value acquisition unit 253. Therefore, the comfort degree display device 250 displays only the comfort degree value basic statistic of the comfort degree and the environmental data value basic statistic of the environmental data on the display unit 256.
- the comfort value basic statistics and environmental data values basic statistics are, as described above, time average value, space average value, time median value, space median value, time maximum value, time maximum value, space maximum value, time The minimum value, the spatial minimum value, the temporal mode value and the spatial mode value are included.
- the basic statistic calculation unit 257 calculates the time average value or the space average value of the comfort value generated by the comfort value generation unit 254 and the time average value of the environmental data value acquired by the environmental data value acquisition unit 253 or An example of calculating the spatial average value will be described.
- the preference storage unit 251, the attribute storage unit 252, the environment data value acquisition unit 253, the comfort value generation unit 254, and the display unit 256, which constitute the comfort degree display device 250, are the comfort degree described with reference to FIG.
- the preference storage unit 201, the attribute storage unit 202, the environment data value acquisition unit 203, the comfort level value generation unit 204, and the display unit 206 of the display device 200 are the same as the preference storage unit 201, and thus the description is omitted. Further, the operations in steps S201 and S202 in FIG. 11 are the same as the operations in steps S201 and S202 previously shown in FIG.
- the comfort degree display device 250 generates statistical quantity display data in step S204 of FIG. 11 in place of the display integrated data of step S203 of FIG. 9 (step S204).
- the display unit 256 displays the statistic display data (step S106).
- FIG. 6 is one of the display examples of the comfort degree display device 200 of the second embodiment.
- FIG. 6 shows the temperatures at the seat position A-1 of row A and No. 1 which are specific positions of the air-conditioned space 40 shown by the XY plane in FIG. It shows the time change of the degree of comfort.
- numerical values of the average temperature of the predetermined period and the average value of the comfort value for the predetermined period for each user are displayed.
- FIG. 6 shows temporal changes (the broken line a, the two-dot chain line b, and the one-dot chain line c) of the comfort values of the users A, B, and C generated by the comfort value generation unit 204.
- FIG. 6 shows temporal changes (the broken line a, the two-dot chain line b, and the one-dot chain line c) of the comfort values of the users A, B, and C generated by the comfort value generation unit 204.
- FIG. 6 shows temporal changes (the broken line a, the two-dot chain line
- FIG. 6 the time change (solid line T) of the environmental data value of the air-conditioned space 40 which the environmental data value acquisition part 203 acquired is shown. Furthermore, in FIG. 6, the time average value of the comfort value of the users A, B, and C calculated by the basic statistic calculation unit 207 and the time average value of the temperature which is the environmental data value of the air conditioned space 40 are shown. That is, FIG.
- FIG. 6 shows the time change of comfort value of users A, B and C (broken line a, two-dot chain line b, one-dot chain line c), the time change of environmental data value of air conditioning space 40 (solid line T) and user A
- FIG. 6 is one of the display examples of the comfort degree display device 200 of the second embodiment.
- FIG. 7 is one of the display examples of the comfort degree display device 200 of the second embodiment.
- FIG. 7 shows an example in which marks indicating the degree of comfort of the user sitting at each seat position at that time are displayed superimposed on the temperature distribution in the air-conditioned space 40 indicated by the XY plane at a certain time. Further, on the right side of FIG. 7, the average temperature of the predetermined period and the average value of the comfort value of all the users in the predetermined period are displayed. Thus, in FIG. 7, the mark corresponding to the comfort value of each user generated by the comfort value generation unit 204 is shown. Moreover, in FIG. 7, the temperature distribution of the air-conditioned space 40 which the environmental data value acquisition part 203 acquired is shown. That is, FIG.
- FIG. 7 shows, on the display unit 206, display integrated data in which the space average value of the comfort level values of all the users calculated by the basic statistic calculation unit 207 and the space average value of the temperature of the air conditioning space 40 are synthesized. An example of output is shown.
- FIG. 7 is one of the display examples of the comfort degree display device 200 of the second embodiment.
- FIG. 12 is one of the display examples of the comfort degree display device 250 of the third embodiment.
- FIG. 12 shows the temperature at the seat position A-1 of row A, which is a specific position of the air-conditioned space 40 shown by the XY plane in FIG. 7 and the comfort of the users A, B and C, as in FIG. It shows daily change.
- a solid line T with a circular plot indicates a change in temperature.
- the dashed line a with a triangular plot shows the change of the standard user A comfort value.
- a two-dot chain line b with a square plot shows a change in the comfort value of the user B of “Cold”.
- a dot-dash line c with a star-shaped plot indicates a change in the comfort value of the user C of “Heat”. Similar to the example described above, the standard user A is neither “hot”, “cold” nor “cold” nor “dry skin”, but “age”, “height”, “weight”, “body fat” The rate is the user of the average value of the company.
- the cold user B is a female user who is “cold” and “cold” and whose "body weight” and “body fat percentage” are smaller than the company's standard.
- the hot user C is a hot user and a male user whose “body weight” and “body fat percentage” are larger than the standard of the company.
- the horizontal axis indicates each day from August 1st to August 10th.
- Each plot shows the average value of the day.
- a circular plot shows the average temperature of the day and day.
- the triangular, square and star-shaped plots show the average value of the comfort value of each user A, B, C of the day. Therefore, in FIG. 12, the average value of the daily comfort level of each user calculated by the basic statistic calculation unit 257 and the average daily temperature of the air conditioning space 40 as the environmental data value are synthesized. It is a display example at the time of outputting statistical quantity display data to the display part 256.
- FIG. Also, on the right side of FIG. 12, the average temperature for August in the seat position A-1 and the average comfort value for each user A, B, C for the month in August are displayed. It is done.
- a weather bar indicating the weather on that day is provided at the bottom of the date bar.
- the change in the temperature at the seat position A-1 in row A and the degree of comfort of the users A, B and C on a daily basis is displayed.
- the daily change of the weather which is one of the environmental data values is displayed.
- the weather conditions representing the day are indicated by marks such as sunny, cloudy, and rain.
- FIG. 12 shows a display example of the comfort level display device 250 that displays only the average value of the comfort level and the average value of the environmental data on the display unit 256.
- the display data generation unit 205 of the comfort level display device 200 combines only the average value of the comfort level and the average value of the environment data to generate statistic display data, and the generated statistic display data is displayed on the display unit 206. It may be displayed on the screen.
- the temperature distribution in the air conditioning space 40 at a specific day or at a specific time there are cases where it is desirable to grasp the and the user's comfort level value. Therefore, as shown in FIG. 13, the distribution of the temperature of the air-conditioned space 40 of that day and the mark corresponding to the degree of comfort of each user may be displayed by clicking on the date portion of the date bar shown in FIG. Similar to FIG. 7, in FIG. 13, the smile mark indicates that the user feels comfortable. The smile marks correspond to comfort values ranging from -0.5 to +0.5. The offensive face mark indicates that the user feels uncomfortable.
- the offensive face mark corresponds to a comfort value greater than +1.5, or a comfort value less than -1.5. Indicates that the user feels between comfort and discomfort, not comfort but not discomfort.
- Normal face marks correspond to comfort values between 0.5 and 1.5, -0.5 to -1.5.
- FIG. 13 for example, the temperature distribution in the air-conditioned space 40 on a sunny day as in “8/1” shown in FIG. 12 and a mark corresponding to the degree of comfort of each user are shown. Further, in FIG. 13, a clear mark and a state where sunlight is incident from the window 45 are additionally displayed outside the window 45.
- FIG. 14 for example, as in “8/2” shown in FIG.
- a temperature distribution in the air-conditioned space 40 on a rainy day and a mark corresponding to the degree of comfort of each user are shown.
- the correspondence between the mark corresponding to the user comfort level and the comfort level is the same as that in FIG.
- the rain mark is displayed outside the window 45. From the difference between the temperature distribution on a sunny day and the distribution of the comfort level of the user shown in FIG. 13 and the distribution of the temperature on a rainy day and the distribution of the user level shown in FIG. The adjustment of the air conditioning can be changed on rainy days.
- the distribution of the average temperature for a certain day and the distribution of the average degree of comfort for the day may be displayed.
- FIG. 15 is one of the display examples of the comfort degree display device 200 of the second embodiment.
- four table sets 55 configured of four chairs 52 and one table 51 are arranged.
- the outlets 53 of the air conditioning equipment are disposed on the respective tables 51.
- temperature distribution in such an air conditioned space 50, a user's comfort degree, and average comfort degree are displayed.
- the table set 55 is arranged in two rows of A and B, and two rows of No. 1 and No. 2.
- the numbers in the middle of each chair 52 indicate the comfort value of the user at each chair 52 position.
- the number in the center of the table 51 displays the average value of the comfort levels of the four users of one table 51 as the representative comfort level of the table set 55.
- the display of FIG. 15 is effective, for example, when the air conditioning manager adjusts the air conditioning equipment so that the representative comfort value of the table set 55 becomes zero.
- the comfort degree display devices 200 and 250 superimpose and display the time average value which is a comfort degree value basic statistic and the time average value which is an environmental data value basic statistic. For this reason, the air conditioning manager can grasp the tendency of the degree of comfort and the relation with the environmental data, and can easily judge the necessity for replacement, addition, etc. of the air conditioning equipment. Moreover, the comfort degree display devices 200 and 250 superimpose and display the space average value of the comfort degree value and the space average value of the environmental data value. For this reason, the air conditioning manager can grasp the tendency of the spatial relevance with the comfort and the environmental data, and the building facilities such as replacement of the air conditioning equipment in a specific area of the air conditioning space 40, 50 and partitions can be added. The need for installation can be easily determined.
- comfort degree display devices 200 and 250 can calculate the median, the maximum value, the minimum value or the mode value instead of the average value, and can display the calculated value. Thereby, management of the air conditioning installation of an air conditioning manager and utilization of a user's air conditioning installation can be made easy.
- the comfort degree display device 300 of the fourth embodiment will be described with reference to FIGS.
- a complementing unit 307 is added to the comfort degree display device 100 described with reference to FIG. 1.
- the preference storage unit 301, the attribute storage unit 302, the environment data value acquisition unit 303, the comfort value generation unit 304, and the display unit 306, which constitute the comfort degree display device 300 are the comfort degree display devices described with reference to FIG. Since the preference storage unit 101, the attribute storage unit 102, the environmental data value acquisition unit 103, the comfort level value generation unit 104, and the display unit 106 are the same as the 100, the description will be omitted.
- the complementing unit 307 shown in FIG. 16 complements the user's comfort level, which is a discrete value generated by the comfort level generating unit 304, and calculates a continuous value for time or space.
- the complementing unit 307 complements the environmental data value of the air conditioning space 40, which is a discrete value acquired by the environmental data value acquiring unit 303, and calculates a continuous value for time or space.
- the display data generation unit 305 is configured to connect either the user comfort level to the time or space, and the environment data value of the air-conditioned space 40 to the time or space.
- the continuous display data is generated by combining with one of the values.
- the comfort degree display device 300 complements the temperature which is a discrete value with respect to time and the comfort degree value of each user Display as a smooth curve.
- the display is easily viewed by making the discrete data a continuous line by complementation, and it is possible for the air conditioning manager to grasp the relevance between the comfort level and the environmental data more easily. it can.
- FIG. 18 the comfort level display device 400 of the fifth embodiment will be described with reference to FIGS. 18 to 20.
- FIG. 18 is a schematic diagram of the comfort level display device 400 of the fifth embodiment.
- an abnormality detection unit 407 is added to the comfort degree display device 100 shown in FIG. 1.
- the preference storage unit 401, the attribute storage unit 402, the environment data value acquisition unit 403, the comfort value generation unit 404, and the display unit 406, which constitute the comfort degree display device 400, are the comfort degree display devices described with reference to FIG. Since the preference storage unit 101, the attribute storage unit 102, the environmental data value acquisition unit 103, the comfort level value generation unit 104, and the display unit 106 are the same as the 100, the description will be omitted. Further, in FIGS. 19 and 20 showing the operation of the comfort level display device 400, the same steps as the operations of the comfort level display device 100 described with reference to FIG. Description of is omitted.
- the abnormality detection unit 407 illustrated in FIG. 18 detects an abnormality when the comfort degree value of the user is not within the comfort limit range, and outputs abnormal data.
- the comfort limit range is a limit range that feels warm or cool.
- the comfort limit range is ⁇ 2.0 ⁇ comfort value ⁇ 2.0. If the degree of comfort value falls below -2.0 or exceeds 2.0, the abnormality detection unit 407 may determine that the degree of comfort value of the user is not within the comfort limit range.
- Exceeding the comfort limit range is equivalent to about 70% or more of people feeling uncomfortable.
- the comfort limit range may be set to ⁇ 1.5 ⁇ comfort value ⁇ 1.5.
- the abnormality detection unit 407 generates the comfort level value generation unit 404 when the comfort level value generated by the comfort level value generation unit 404 is not within the comfort limit range described above. Determine the comfort level as an outlier. Then, the abnormality detection unit 407 proceeds to step S402 in FIG. 19 and detects an abnormality. Further, the abnormality detection unit 407 outputs abnormal data as shown in step S403 of FIG. Then, as shown in step S404 of FIG. 19, the display data generation unit 405 outputs the abnormal data output from the abnormality detection unit 407, the user's comfort level value generated by the comfort level generation unit 404, and the air conditioning space 40. Anomaly display data are generated by combining with environmental data values. Then, as shown in step S106 of FIG. 19, the display unit 406 displays the abnormality display data.
- FIG. 12 is one of the display examples of the comfort level display device 250 of the third embodiment, but an exclamation point in a triangle in FIG. 12!
- the part of the mark (attention mark) which displayed is a display example of the comfort degree display device 400.
- the caution mark displayed on the display unit 406 corresponds to the abnormal data output from the abnormality detection unit 407.
- the display data generation unit 405 is based on the abnormal data output from the abnormality detection unit 407, and the comfort value among the user's comfort degree values generated by the comfort degree value generation unit 404.
- Anomaly identification display data may be created in which the comfort value exceeding the limit value range can be distinguished from other comfort values.
- the display data generation unit 405 may generate abnormality identification display data in which a plot indicating the target comfort level is displayed in a blinking manner.
- the display data generation unit 405 of the comfort degree display device 400 can identify abnormality identification display data that can distinguish the comfort degree value of the user whose abnormality is detected by the abnormality detection unit 407 with the comfort degree value of another user.
- the comfort degree value and the environmental data value of the air conditioning space 40 may be synthesized and generated.
- the comfort degree display device 400 causes the display unit 406 to display a caution mark indicating that the comfort degree value is an abnormal value, or causes the air conditioning manager to be offensive by displaying the plot in a blinking manner. Early on, and can adjust the air conditioning equipment early.
- the comfort degree display device 500 has a type-by-type recommended region generation unit 507 instead of the comfort degree value generation unit 104 of the comfort degree display device 100 shown in FIG. 1.
- the environmental data value acquiring unit 503 and the display unit 506 constituting the comfort degree display device 500 are the same as the environmental data value acquiring unit 103 and the display unit 106 of the comfort degree display device 100 described with reference to FIG. 1.
- the preference storage unit 501 and the attribute storage unit 502 shown in FIG. 21 are the same as the preference storage unit 101 and the attribute storage unit 102 shown in FIG. 1, respectively, the user preference database 901 shown in FIG. 3 and the user attribute database 902 shown in FIG. It is stored. Furthermore, the preference storage unit 501 stores, in the user preference database 901, the preference for the air conditioning environment of the reference user classified by type. Further, the attribute storage unit 502 stores the attributes of the reference user classified by type in the user attribute database 902.
- the type-based reference user is a standard person in each type of user represented by “Heat”, “Cold”, etc., and is an assumed person.
- attributes such as age, height, weight, body fat percentage, etc. are the average value or median value of the company, and "Heat” is registered in the preference. It is a user.
- attributes such as age, height, weight, and body fat percentage are the average value or median of the company, and "Cold” is registered in the preference Such a user.
- the type-specific recommended area generation unit 507 generates the type-based reference user comfort value for each area of the air-conditioned space 40.
- the type classified recommended area generation unit 507 designates an area in which the degree of comfort value of the type classified reference user is in the predetermined range as the type classified recommended area.
- the predetermined range is, for example, a range of a degree of comfort value that a person of about 90% or more feels comfortable.
- the predetermined range may be a range of ⁇ 0.5 ⁇ comfort value ⁇ 0.5.
- the display data generation unit 505 combines the type recommendation area and the environmental data value of the air conditioning space 40 to generate type recommendation area display data, and outputs the generated type recommendation area display data to the display unit 506. .
- the type-by-type recommended area generation unit 507 sets an area in the air-conditioned space 40 in which the degree of comfort value is calculated, as shown in step S501 in FIG.
- the type-specific recommended area generation unit 507 divides the air-conditioned space 40 represented by XY shown in FIG. 7 into lattice-like areas, for example, and sets the area obtained by the division as an area for calculation of the comfort value.
- the type-by-type recommended area generation unit 507 may set, for example, an area in which the degree of comfort value is calculated for each seat position centering on the position of the chair 42.
- the type-by-type recommended area generation unit 507 sets, for example, an area for calculating the comfort level, with the area around seat position A-1 as area 1 and the area around seat position A-2 as area 2. May be
- the type-by-type recommendation area generation unit 507 reads out the preference of the type-based reference user from the preference storage unit 501, as shown in step S502 of FIG.
- the type-specific recommended area generation unit 507 reads the preference of the user specified as “heat” from the user preference database 901.
- the type-by-type recommendation area generating unit 507 reads out the attribute of the type-based reference user from the attribute storage unit 502, as shown in step S503 of FIG.
- data such as average weight and body fat percentage of the company are read out from the user attribute database 902.
- the type-specific recommended area generation unit 507 makes environmental data such as temperature, humidity, wind speed, radiation temperature, etc. of the setting area in the air conditioning space 40 from the environmental data value acquisition unit 503 Get the value.
- the type-by-type recommendation region generating unit 507 proceeds to step S504 in FIG. 22 and generates the type-based reference user comfort value in the setting region.
- the type-specific recommended area generation unit 507 sets the four physical quantities of the temperature, humidity, wind speed, and radiation temperature of the set area acquired from the environmental data value acquisition unit 503 in step S103 of FIG.
- the standard human PMV in the setting area is calculated by the equation (2) using the typical human clothes amount and exercise amount.
- the type-by-type recommendation area generation unit 507 uses the preferences by type user and the attributes by type preference read out from the preference storage unit 501 and the attribute storage unit 502 and uses the attributes by formulas (1), (3), and (4) Generate a user comfort value.
- the type-by-type recommendation region generating unit 507 proceeds to step S505 shown in FIG. 22, and determines whether or not the generated comfort value of the type-based reference user is within a predetermined range. Then, if the comfort level value of the type-based reference user is within the predetermined range, the type-by-type recommended area generation unit 507 determines YES in step S505 of FIG. 22 and proceeds to step S506 of FIG. Then, the type-by-type recommendation area generation unit 507 incorporates the set calculation area into the type-by-type recommendation area, and proceeds to step S507 in FIG.
- step S505 in FIG. 22 the type-by-type recommendation area generation unit 507 proceeds to step S507 in FIG. 22 without incorporating the set calculation area in the type-by-type recommendation area.
- step S507 in FIG. 22 the type-specific recommended area generation unit 507 determines whether the calculation of the entire area of the air-conditioned space 40 is completed. If the calculation of all the areas is not completed, the type-by-type recommended area generation unit 507 returns to step S501 in FIG. 22 and repeatedly executes steps S501 to S506.
- step S508 in FIG. move on the generation of the type recommendation area generation unit 507 ends the generation of the degree of comfort value of the type standard user and the determination as to whether or not it can be incorporated into the type recommendation area in all the areas of the air conditioning space 40.
- the display data generation unit 505 combines the recommended area classified by type and the environmental data value of the air-conditioned space 40 in step S508 of FIG. Is output to the display unit 506.
- the display unit 506 displays this type of recommended area display data.
- FIG. 23 is a display example of the display unit 506 of the comfort degree display device 500.
- the range in which the type-specific reference user feels comfortable and the temperature distribution of the air-conditioned space 40 are displayed in a superimposed manner.
- the diagonally hatched area shown in FIG. 23 corresponds to the temperature range of 25.5 ° C. to 26.5 ° C., and shows the “hot” type type reference criteria user feels comfortable.
- the cross hatching area shown in FIG. 23 corresponds to the area of 26.5 ° C. to 27.5 ° C., and indicates the area that the user classified by type of “cold” type feels comfortable.
- the comfort degree display device 500 displays the recommended area according to types such as heat type, cold type, etc., so that the user can be prompted to view the display and move to a desired place. For example, when a user may be seated at any place as in a free address office, the overall comfort and productivity can be improved if each person is seated according to his / her preference.
- the comfort degree display device 550 of the seventh embodiment will be described with reference to FIG. The same parts as in the comfort degree display device 500 described with reference to FIG.
- a destination display unit 508 is added to the comfort degree display device 500 described with reference to FIG.
- the destination display unit 508 can display the type recommendation area by projection mapping or augmented reality. Thereby, the comfort degree display device 550 can recommend the movement to the user more effectively.
- the degree of comfort display device 600 shown in FIG. 25 has a user-by-user recommended region generation portion 607 instead of the degree of comfort value generation portion 104 of the degree of comfort display device 100 shown in FIG.
- the preference storage unit 601, the attribute storage unit 602, the environment data value acquisition unit 603, and the display unit 606, which constitute the comfort degree display device 600, are the preference storage portion 101 of the comfort degree display device 100 described with reference to FIG. Similar to the storage unit 102, the environmental data value acquisition unit 103, and the display unit 106.
- the user-by-user recommendation area generation unit 607 sets an area in the air-conditioned space 40 where the calculation of the degree of comfort value is performed, as in the comfort degree display device 500 described above.
- the user classified recommended region generation unit 607 reads the preference and attribute of a specific user from the preference storage unit 601 and the attribute storage unit 602.
- the user-specific recommended area generation unit 607 receives environmental data such as temperature, humidity, wind speed, radiation temperature, etc. of the setting area in the air conditioning space 40 from the environmental data value acquisition unit 603. Get the value.
- the user-by-user recommendation area generation unit 607 proceeds to step S104 in FIG. 26, and generates a comfort value of a specific user in the setting area. More specifically, the user-specific recommended area generation unit 607 performs four physical quantities of temperature, humidity, wind speed, and radiation temperature of the setting area acquired from the environmental data value acquisition unit 503 in step S103 of FIG.
- the PMV of a specific user in the set area is calculated by the equation (2) using the standard amount of clothes and exercise amount of
- the user-specific recommended region generation unit 607 may use, as the amount of clothing, a value estimated from the temperature difference between the temperature of the skin of the specific user measured by the thermo camera and the temperature of the clothing. Further, the user-by-user recommended region generation unit 607 may use a value obtained by analyzing an image of a monitoring camera or the like as the amount of exercise.
- the user-specific recommended area generation unit 607 uses the preferences and attributes of the specific user read out from the preference storage unit 501 and the attribute storage unit 502, and uses the attributes (1), (3), and (4). Generate comfort value.
- the user-by-user recommendation area generation unit 607 proceeds to step S602 shown in FIG. 26, and determines whether or not the generated comfort value of the specific user is within the predetermined range. Then, when the comfort value of the specific user is within the predetermined range, the user-by-user recommendation area generation unit 607 determines YES in step S602 of FIG. 26, and proceeds to step S603 of FIG. Then, the user recommendation area generation unit 607 incorporates the set calculation area into the user recommendation area, and proceeds to step S604 in FIG.
- step S602 in FIG. 26 the user recommendation area generation unit 607 proceeds to step S604 in FIG. 26 without incorporating the set calculation area into the user recommendation area.
- step S 604 in FIG. 26 the user classified recommended area generation unit 607 determines whether the calculation of the entire area of the air-conditioned space 40 is completed, and when the calculation of all the areas is not completed, the step in FIG. The process returns to step S601 to repeatedly execute steps S601 to S603.
- step S605 when the user-specific recommended area generation unit 607 finishes the generation of the degree of comfort of the specific user and the determination as to whether or not it can be incorporated into the user-specific recommended area in all areas of the air-conditioned space 40, the process proceeds to step S605 in FIG.
- the display data generation unit 605 combines the user-preferred area and the environmental data value of the air-conditioned space 40 in step S605 of FIG. 26 to generate the user-preferred area display data, and generates the user-preferred area display data Is output to the display unit 606.
- the display unit 606 displays the user-specific recommended area display data.
- FIG. 23 described above is also a display example of the display unit 606 of the comfort degree display device 600.
- the diagonally hatched area shown in FIG. 23 indicates an area where the specific user C of "Heat” feels comfortable.
- the cross hatching area shown in FIG. 23 indicates an area where the specific user B of “Cold” feels comfortable.
- the comfort degree display device 600 automatically recommends which place in the air-conditioned space 40 the particular user should go in consideration of the preferences and attributes of the particular user. Therefore, the user can easily move to a comfortable position without confirming the display etc. of the display 27.
- the comfort level display device 650 of the ninth embodiment will be described with reference to FIG.
- a destination display portion 608 is added to the comfort degree display device 600 described with reference to FIG.
- the destination display unit 608 can display the user-by-user recommendation area by projection mapping or augmented reality. Thereby, the comfort degree display device 650 can recommend the movement to the user more effectively.
- FIG. 28 a comfort level display device 700 of the tenth embodiment will be described with reference to FIGS. 28 to 30.
- FIG. 28 in the comfort degree display device 700, a user state acquisition unit 707 and a recommended action generation unit 708 are added to the comfort degree display device 100 described with reference to FIG.
- the preference storage unit 701, the attribute storage unit 702, the environment data value acquisition unit 703, and the display unit 706, which constitute the comfort degree display device 700, are the preference storage portion 101 of the comfort degree display device 100 described with reference to FIG. The same as the storage unit 102, the environmental data value acquisition unit 103, and the display unit 106.
- the user state acquisition unit 707 acquires a current state amount such as a current clothes amount and exercise amount of a specific user, and a current position of the specific user.
- the user state acquisition unit 707 may acquire, for example, a value obtained from the temperature difference between the temperature of the skin measured by the thermo camera and the temperature of the clothes as the amount of clothes.
- the user state acquisition unit 707 may acquire, as the amount of exercise and the current position, values obtained by analyzing the image of the monitoring camera.
- the degree-of-comfort value generation unit 704 includes the preference of the user stored in the preference storage unit 701, the attribute of the user stored in the attribute storage unit 702, and the environmental data value of the air conditioning space 40 acquired by the environmental data value acquisition unit 703. Based on the current state quantity of the user acquired by the user state acquisition unit 707 and the current position of the user, a current comfort value indicating the current comfort of the user is generated. Then, the comfort degree value generation unit 704 outputs the generated current comfort degree value to the display data generation unit 705 and the recommended action generation unit 708.
- the recommended behavior generation unit 708 determines the change state amount of the user whose comfort value falls within the predetermined range when the current comfort value input from the comfort value generation unit 704 is not within the predetermined range. Specifically, the recommended action generation unit 708 changes the user's state quantity from the current state quantity until the user's comfort level falls within the predetermined range, and the user's preference, the user's attributes, and the environment of the air-conditioned space 40 By repeating the operation of generating the user's comfort level value based on the data value and the current position of the user, the user's change state amount in which the user's comfort level value falls within the predetermined range is determined. Then, the recommended action generation unit 708 generates the recommended action of the user based on the difference between the current state amount of the user and the change state amount.
- the display data generation unit 705 is generated by the user's current comfort degree value generated by the comfort degree value generation unit 704, the environmental data value of the air conditioning space 40 acquired by the environmental data value acquisition unit 703, and the recommended action generation unit 708
- the recommended action display data is generated by combining with the recommended action. Then, the display data generation unit 705 outputs the generated recommended action display data to the display unit 706.
- the comfort value generation unit 704 reads the user's preferences and attributes from the preference storage unit 701 and the attribute storage unit 702, and the temperature of the air conditioning space 40 from the environment data value acquisition unit 703. , Environmental data values such as humidity and wind speed. Further, as shown in steps S701 and S702 in FIG. 29, the comfort level value generation unit 704 acquires the current amount of state such as the amount of clothes and exercise amount of the current user from the user state acquisition unit 707 and the current position of the user. Do.
- the degree-of-comfort value generation unit 704 generates the current degree of comfort of the user. Specifically, the comfort level value generation unit 704 calculates the four physical quantities of the temperature, humidity, wind speed, and radiation temperature of the air conditioning space 40 acquired from the environment data value acquisition unit 703 in step S103 of FIG.
- the current PMV of the user is calculated by equation (2) using the current clothing amount and exercise amount of the user acquired in S701.
- the comfort level value generation unit 704 uses the preferences and attributes of the user read out from the preference storage unit 701 and the attribute storage unit 702 in steps S101 and S102 of FIG. To generate the current comfort value of the user. Then, the generated current comfort value of the user is output to the recommended behavior generation unit 708 and the display data generation unit 705.
- the recommended action generation unit 708 determines whether the current comfort degree value of the user input from the comfort degree value generation unit 704 is within the predetermined range, as shown in step S704 of FIG.
- the predetermined range is, for example, a range of a degree of comfort value that a person of about 90% or more feels comfortable, and may be a range of ⁇ 0.5 ⁇ a degree of comfort value ⁇ 0.5.
- the process proceeds to step S705 in FIG. 29, and changes the state amount of the user from the current state amount. For example, when the amount of clothes of the user is larger than the standard amount of clothes, the recommended action generation unit 708 reduces the amount of clothes. Conversely, when the amount of clothes is smaller than the standard amount of clothes, the recommended action generation unit 708 increases the amount of clothes. Then, the recommended action generation unit 708 reads the preference and attribute of the user from the preference storage unit 701 and the attribute storage unit 702 in step S706 in FIG. 29, and the temperature, humidity, and wind speed of the air conditioning space 40 from the environment data value acquisition unit 703. The environmental data value such as is acquired, the user's comfort level value is generated using the changed state quantity which is the changed user's state quantity, and the process proceeds to step S 707 in FIG. 29.
- the recommended behavior generation unit 708 determines whether the user comfort value generated in step S706 is within the predetermined range in step S707 of FIG. If NO in step S707 of FIG. 29, the recommended action generation unit 708 returns to step S705 in FIG. 29, changes the state amount of the user, and generates the user's comfort level value in step S706. Thus, the recommended behavior generation unit 708 repeatedly changes the state quantity of the user until the comfort value of the user falls within the predetermined range, and generates the comfort value of the user. Then, if the recommended action generation unit 708 determines YES in step S707 in FIG. 29, the process proceeds to step S708 in FIG. 29, and determines the user's change state amount. Then, in step S709 in FIG. 29, the recommended action generating unit 708 generates a recommended action based on the difference between the current state amount of the user acquired in step S701 and the change state amount of the user determined.
- the recommended action generation unit 708 generates a recommended action of "Get up and try exercise. Get warm.”
- the display data generation unit 705 receives environmental data values such as temperature and humidity acquired from the environmental data value acquisition unit 703 and the user's current comfort input from the comfort level generation unit 704. The degree value and the recommended action input from the recommended action generation unit 708 are combined to generate recommended action display data. Then, the display data generation unit 705 outputs the generated recommended action display data to the display unit 706. The display unit 706 displays the recommended action display data, as shown in step S106 of FIG.
- the recommended action display data displayed by the display unit 706 will be described with reference to FIG.
- a mark corresponding to the current comfort degree value of the user is superimposed on the temperature distribution of the air-conditioned space 40 as in FIG.
- the wording of the recommended action for the user is superimposed.
- the user is sitting at the seat position B-1, and the temperature near the seat position is about 28.5.degree.
- the user's current comfort value is +2.0, and the user feels warm (the mark is indicative of discomfort when the mouth is lowered).
- the user is wearing a coat. Then, it is recommended that the user take the jacket off by displaying the recommendation message "It will cool if you take off the jacket" in the upper right as a recommended statement.
- the comfort degree display device 700 recommends an action that improves the user's comfort based on the current position of the user and the current state quantity, and thus can improve the user's comfort and productivity.
- the comfort level display device 580 of the eleventh embodiment will be described with reference to FIG.
- the comfort degree display device 500 described with reference to FIG. 21 is the same as the comfort degree value generation unit 104 of the comfort degree display device 100 described with reference to FIG.
- the degree-of-comfort value generator 504 is added.
- the operation of the type-specific recommended region generation unit 507 is the same as the operation of the comfort level display device 500 described with reference to FIG.
- the display data generation unit 505 of the comfort degree display device 580 includes the user comfort degree value generated by the comfort degree value generation unit 504, the type classified recommended area generated by the type classified recommended area generation unit 507, and the environmental data value acquiring unit The environmental data value of the air-conditioned space 40 acquired in 503 is combined to generate type-by-type recommended area display data. Then, the display data generation unit 505 outputs the generated type-by-type recommended area display data to the display unit 506.
- FIG. 32 A display example of the display unit 506 of the comfort degree display device 580 is shown in FIG. In FIG. 32, the range in which the type-specific reference user feels comfortable, the temperature distribution of the air-conditioned space 40, and the mark corresponding to the comfort value of each user are superimposed.
- the hatched area shown in FIG. 32 corresponds to the temperature range of 25.5 ° C. to 26.5 ° C., and indicates the area that the type-based standard user of the “Heat” type feels comfortable.
- the cross hatching area shown in FIG. 32 corresponds to the temperature range of 26.5 ° C. to 27.5 ° C., and shows an area where the “cold” type type standard feels comfortable.
- the comfort degree display device 580 has the same function and effect as the comfort degree display device 500.
- the comfort level display device 680 of the twelfth embodiment will be described with reference to FIG. As shown in FIG. 33, in the comfort degree display device 680, the comfort degree display device 600 described with reference to FIG. 25 is similar to the comfort degree value generation unit 104 of the comfort degree display device 100 described with reference to FIG. The degree-of-comfort value generator 604 is added. The operation of the user-by-user recommendation area generation unit 607 is the same as the operation of the comfort level display device 600 described with reference to FIG.
- the display data generation unit 605 of the comfort degree display device 680 includes the user comfort degree value generated by the comfort degree value generation unit 604, the user recommended area generated by the user recommended area generation unit 607, and the environmental data value acquisition unit The environmental data value of the air-conditioned space 40 acquired in 603 is combined to generate user-by-user recommended area display data. Then, the display data generation unit 605 outputs the generated user-by-user recommendation area display data to the display unit 606.
- the user recommended region display data is displayed on the display unit 606 of the comfort degree display device 680 as shown in FIG.
- the hatched area shown in FIG. 32 indicates an area where the specific user C of "Heat” feels comfortable.
- the cross hatching area shown in FIG. 32 indicates an area where the specific user B of “Cold” feels comfortable.
- the comfort degree display device 680 has the same function and effect as the comfort degree display device 600.
- the comfort level display device 800 of the thirteenth embodiment will be described with reference to FIG. As shown in FIG. 34, in the comfort degree display device 800, an area information storage unit 808 is added to the comfort degree display device 100 described with reference to FIG. In addition, the comfort degree display device 800 replaces the comfort degree value generation unit 104, the environmental data value acquisition unit 103, and the display data generation unit 105, and the area comfort degree value generation unit 804, the area environmental data value acquisition unit 803, and the area display A data generation unit 805 and a display unit 806 are included.
- the comfort degree display device 800 displays area comfort degree values and area environmental data values for a plurality of areas 451 to 454 of the air-conditioned space 40.
- the air-conditioned space 40 is, for example, one floor of a building, and the areas 451 to 454 are parts of the floor.
- Office desks 411 to 414 and chairs 421 to 424 are arranged on the floor of each of the areas 451 to 454, and air outlets 431 to 434 of the air conditioning equipment are arranged on the ceiling.
- the area information storage unit 808 stores configuration information of the areas 451 to 454.
- the configuration information of the areas 451 to 454 includes information on the position and size of the areas 451 to 454 such as the position and size of each area. Further, the configuration information of the areas 451 to 454 includes information on the arrangement of the air conditioners, indoor units, temperature sensors, humidity sensors, anemometers and the like arranged in the areas 451 to 454. Further, the configuration information of the areas 451 to 454 includes the arrangement of the desks of the areas 451 to 454 and information specifying the user sitting there, for example, information such as name and employee number.
- the area environment data value acquiring unit 803 refers to the configuration information of the areas 451 to 454 stored in the area information storage unit 808 in step S801 in FIG. Acquire every time.
- the area comfort value generation unit 804 is, in step S802 in FIG. 35, the user preference read out from the preference storage unit 101 in step S101 in FIG. 35 and the user attribute read out from the attribute storage unit 102 in step S102 in FIG. Based on the area environmental data value acquired by the area environmental data value acquiring unit 803 and the area environmental data value acquired by the area environmental data value, the area comfort value indicating the comfort in the areas 451 to 454 of the user is generated.
- the method of generating the area comfort degree is the same as the method of generating the comfort degree display device 100 described above.
- step S 803 in FIG. 35 the area display data generation unit 805 generates the area comfort value of the user generated by the area comfort value generation unit 804 and the area environmental data value acquired by the area environmental data value acquisition unit 803. Synthesize to generate area display data.
- the display unit 806 displays one or more area display data in step S804 of FIG.
- FIG. 36 shows an example of display on the display unit 806.
- FIG. 36 shows the degree of comfort of the user sitting at each seat position of each area 451 to 454 at that time on the temperature distribution of each area 451 to 454 in the air-conditioned space 40 indicated by the XY plane at a certain time. The example which piled up the mark which shows is shown.
- the data in FIG. 36 is displayed on the display unit 806.
- face marks indicating the degree of comfort of the user are displayed at the centers of the respective chairs 421 to 424. With such a display, at a certain time, how temperatures are distributed in each area 451 to 454 of the air-conditioned space 40 and how each user of each area 451 to 454 feels easily it can.
- the air conditioning manager can easily determine how to adjust the set temperature for each of the areas 451 to 454 in the air conditioning space 40.
- FIG. 37 shows another display example of the display unit 806.
- FIG. 37 shows the change in temperature at each specific position of each of the areas 451 to 454 in the air-conditioned space 40 shown in FIG. 36 and the change in time of the degree of comfort of the user.
- office desks 411 to 414 and chairs 421 to 424 are arranged in three rows from No. 1 to No. 3 in two rows of row A and row B, respectively.
- solid lines T1 to T4 showing temporal changes in temperature at the seat position of row A are shown for each of the areas 451 to 454 of the air-conditioned space 40 shown in FIG. Further, in FIG.
- broken lines a1 to a4 indicating the comfort levels of the standard users A1 to A4, two-dot chain lines b1 to b4 indicating the comfort levels of the cold users B1 to B4, and the heat users C1 to C4.
- the dashed-dotted line c1 to c4 indicating the degree of comfort of C4 is shown.
- the air conditioning manager can grasp the correlation between the change in the degree of comfort value of the users A1 to A4, B1 to B4 and C1 to C4 and the temperature for each of the areas 451 to 454. It is possible to adjust the set temperature of the air-conditioning equipment of ⁇ 454.
- the comfort level display device 800 generates area display data by combining the area comfort value of the user for each of the areas 451 to 454 with the area environment data value, and generates the generated area display data. Display Therefore, the air conditioning manager can grasp the tendency of the relationship between the comfort and the environmental data for each of the areas 451 to 454 and easily judge the necessity of replacement or addition of the air conditioning equipment for each area. it can.
- an area basic statistic calculation unit 817 is added to the comfort degree display device 800 described with reference to FIG.
- the preference storage unit 101, the attribute storage unit 102, the area environment data value acquisition unit 803, the area comfort value generation unit 804, and the display unit 806, which constitute the comfort degree display device 800, are the comfort degrees described with reference to FIG. The description is omitted because it is the same as the display device 800.
- the area basic statistic calculation unit 817 calculates an area comfort value basic statistic and an area environmental data value basic statistic.
- the area comfort value basic statistic is a basic statistic representing the area comfort value of the user generated by the area comfort value generation unit 804, and has the following groups (1) to (5): ing. (1) user's area comfort value time average value or space average value (2) user's area comfort value time median value or space median value (3) user area comfort value time maximum value or space maximum value Value (4) The time minimum value or the space minimum value of the area comfort value of the user (5) the time mode or the space mode of the area comfort value of the user
- the area environmental data value basic statistic is a basic statistic representing the area environmental data of each area 451 to 454 of the air-conditioned space 40 acquired by the area environmental data value acquisition unit 803, and the following (6) to (10 Have a group of).
- (6) Time average value or space average value of area environmental data value (7)
- Time median value or space median value of area environmental data value (8)
- Time maximum value or space maximum value of area environmental data value (9)
- Area environment value Temporal minimum value or spatial minimum value of data value (10)
- Area environmental data value temporal mode or spatial mode value is a basic statistic representing the area environmental data of each area 451 to 454 of the air-conditioned space 40 acquired by the area environmental data value acquisition unit 803, and the following (6) to (10 Have a group of).
- (6) Time average value or space average value of area environmental data value (7)
- Time median value or space median value of area environmental data value (8)
- Time maximum value or space maximum value of area environmental data value (9)
- Area environment value Temporal minimum value or spatial minimum value of data value (10)
- the time average value is each average value in a predetermined period such as one day, one week, one month, etc. of each of the areas 451 to 454, for example.
- the space average value is an average value of the user's comfort level in each of the areas 451 to 454 of the air-conditioned space 40 or an average value of environmental data values in the areas 451 to 454. That is, the spatial average value is an average value in each of the areas 451 to 454.
- time median and the space median are medians in the areas 451 to 454, respectively.
- the time maximum value and the space maximum value are the maximum values in the respective areas 451 to 454, respectively.
- the time minimum value and the space minimum value are respectively the minimum values in the areas 451 to 454.
- the temporal mode value and the spatial mode value are modes in the areas 451 to 454, respectively.
- the area display data generation unit 815 generates the area comfort value of the user generated by the area comfort value generation unit 804 and the area environment data of each area 451 to 454 of the air-conditioned space 40 acquired by the area environment data value acquisition unit 803.
- Area and area comfort value representing the area comfort value of the user calculated by the area basic statistic calculation unit 817 and area environment data representing each area environmental data value of each area 451 to 454 of the air conditioning space 40 Data value basic statistics are combined with any one or more to generate display integrated data. Then, the area display data generation unit 815 outputs the generated display integrated data to the display unit 806.
- the area display data generation unit 815 calculates the time average value, the space average value, the time median value, the space median value, the time maximum value of the area comfort value of the user calculated by the area basic statistic calculation unit 817 Spatial maximum value, temporal minimum value, spatial minimum value, temporal mode value, spatial mode value, temporal average value of area environmental data values of areas 451 to 454, spatial average value, temporal median value, temporal median value, temporal maximum value Display combined area comfort value and area environmental data value with any one or more of value, space maximum value, time minimum value, space minimum value, time mode, space mode, etc. Generate integrated data. Then, the area display data generation unit 815 outputs the generated display integrated data to the display unit 806.
- the area basic statistic calculation unit 817 calculates the time average value or the space average value of the area comfort value generated by the area comfort value generation unit 804 and the area environmental data value acquired by the area environmental data value acquisition unit 803.
- An example of calculating a time average value or a space average value of The same steps as in the operation of the comfort level display device 800 described with reference to FIG. 35 will be assigned the same reference numerals as in FIG. 35 for each step, and the description will be omitted.
- the area basic statistic calculation unit 817 calculates a time average value or a space average value of the comfort levels of the group (1) of the area comfort level basic statistics. In addition, the area basic statistics calculation unit 817 calculates the time average value or the space average value of the area environmental data values of the areas 451 to 454 of the group (6) of the area environmental data values basic statistics in step S811 in FIG. Do.
- the area display data generation unit 815 generates the area comfort value of the user generated by the area comfort value generation unit 804 and the areas 451 to 454 acquired by the area environmental data value acquisition unit 803. And the time average value or space average value of the area comfort value of the user calculated by the area basic statistics value calculation unit 817 and the time average value or space average value of the area environmental data values of the areas 451 to 454 And one or more of them together to generate area display integrated data.
- the area display data generation unit 815 outputs the generated area display integration data to the display unit 806. Then, the display unit 806 displays the area display integrated data generated by the area display data generation unit 815, as shown in step S814 in FIG.
- FIG. 40 A display example of the display unit 806 is shown in FIG. 40, a table of the average temperature and the average degree of comfort of the areas 451 to 454 is added to the display of the comfort degree display device 800 described above with reference to FIG.
- the area basic statistic calculation unit 817 calculates the average value.
- the area basic statistic calculation unit 817 in step S810 in FIG. Calculate the time median or space median of the comfort value.
- the area basic statistics calculation unit 817 calculates the time intermediate value or the space intermediate value of the area environmental data values of the areas 451 to 454 of the group (7) of the area environmental data value basic statistics in step S811 of FIG. Do.
- the area basic statistic calculation unit 817 calculates any of the maximum value, the minimum value, and the mode value of the comfort value of the group (3), (4), (5) of the comfort value basic statistics. Further, in step S811 in FIG. 39, the area basic statistic calculation unit 817 sets the maximum value and the minimum value of the area environmental data values of groups (8), (9), and (10) of the area environmental data value basic statistics. Calculate one of the mode values. The other operations are the same as in the case of calculating the average value described above.
- the display unit 806 may combine and display area basic statistics having different area comfort value and area environmental data value.
- the area basic statistic calculation unit 817 calculates the time average value or the space average value of the area comfort value and the time intermediate value or the space intermediate value of the area environmental data values of the areas 451 to 454 of the air conditioned space 40. Then, the area display data generation unit 815 may display these on the display unit 806.
- the area display data generation unit 825 of the comfort level display device 820 of the fifteenth embodiment includes any one of the area comfort level basic statistics and the area environmental data value basic statistics. To generate area statistics display data. Then, the display unit 806 displays one or more area statistic display data. The area display data generation unit 825 does not combine the area comfort degree value of the user generated by the area comfort degree value generation unit 804 with the area environment data value acquired by the area environment data value acquisition unit 803. Therefore, the comfort degree display device 820 displays only the area comfort value basic statistic of the area comfort degree and the area environmental data value basic statistic of the area environmental data on the display unit 806.
- the area basic statistic calculation unit 817 calculates the time average value or the space average value of the area comfort value generated by the area comfort value generation unit 804 and the area environmental data value acquired by the area environmental data value acquisition unit 803.
- the comfort degree display device 820 generates area statistic display data in step S820 of FIG. 42, and the display unit 806 displays the area statistic display data.
- FIG. 43 is one of the display examples of the comfort level display device 820 of the fifteenth embodiment. Similar to FIG. 37, FIG. 43 shows a change in temperature and a change in the degree of comfort of the user at each specific position of each of the areas 451 to 454 in the air-conditioned space 40 shown in FIG. In FIG. 37, the horizontal axis is time, but the horizontal axis in FIG. 43 is a date, and each plot shows the average value of the area comfort degree for each day and the average temperature. Therefore, in FIG.
- the daily average value of the comfort level value of each user calculated by the area basic statistic calculation unit 817 and the daily average value of the temperature which is the area environmental data value of each area 451 to 454 18 shows a display example in the case where statistical quantity display data obtained by combining the above is output to the display unit 806. Further, on the right side of FIG. 43, the monthly average temperature at the seat position A-1 of each of the areas 451 to 454 and the average comfort value of each of the users A, B, and C for one month in August, Is displayed.
- the display unit 806 displays the area comfort value basic statistic and the area environmental data value basic statistic, so that the air conditioning manager can determine the relationship between the comfort degree and the environmental data for each of the areas 451 to 454. You can understand the trend. Therefore, the air conditioning manager can easily judge the necessity for replacement or additional installation of the air conditioning equipment in each of the areas 451 to 454. Also, as the area comfort value basic statistics and area environmental data values basic statistics, the comfort value, average value, median, maximum value, minimum value, mode which is an index representing a data group of environmental data values The data group can be comprehensively grasped by using the value.
- an area information input unit 839 is added to the comfort degree display device 800 described with reference to FIG. 44.
- the area information storage unit 808 stores information on the arrangement and shape of the areas 451 to 454. Also, the area information storage unit 808 stores information on the arrangement of the air conditioners, indoor units, temperature sensors, humidity sensors, anemometers, etc. arranged in the areas 451 to 454. Further, the area information storage unit 808 stores the arrangement of the desks of the areas 451 to 454 and information specifying the user sitting there, for example, information such as the name and the employee number. These pieces of information are often changed frequently. By providing the area information input unit 839 as in the comfort degree display device 830, even if such information is changed, the information in the area information storage unit 808 can be updated as needed, and the display of the appropriate degree of comfort is always performed. It can be carried out.
- a power information acquisition unit 841 is added to the comfort degree display device 100 described with reference to FIG. 45.
- the power information acquisition unit 841 is used for air conditioning of the air conditioning space 40 or other air conditioning equipment such as a ventilator, humidifier, dehumidifier, etc. Obtain power data values to be used by the device.
- the display data generation unit 845 displays the user comfort level value generated by the comfort level value generation unit 104 and the environmental data value of the air-conditioned space 40 acquired by the environmental data value acquisition unit 103.
- the display data is generated by combining the power data values acquired by the power information acquisition unit 841.
- the generated display data is displayed on the display unit 106.
- the comfort degree display device 840 enables the air conditioning manager to grasp the relationship between the power consumption, the degree of comfort, and the environmental data value.
- an area comfort degree evaluation unit 851 is added to the comfort degree display device 810 described with reference to FIG. 47.
- step S851 of FIG. 48 the area comfort level evaluation unit 851 compares the area comfort level basic statistic calculated by the area basic statistic calculation unit 817 with a predetermined threshold and outputs the area comfort level evaluation.
- the area display data generation unit 855 generates the area comfort value of the user generated by the area comfort value generation unit 804, the area environment data value acquired by the area environment data value acquisition unit 803, and the area in step S852 in FIG.
- Area display data is generated by synthesizing the area comfort degree evaluation output by the comfort degree evaluation unit 851.
- the comfort degree display device 850 can easily identify and display a low comfort area from among the plurality of areas 451 to 454. Also, the comfort degree display device 850 displays areas with low comfort among the plurality of areas 451 to 454 using the area comfort degree evaluation so that areas with low comfort can be identified and displayed more easily. It is also good.
- a biological information storage unit 861 and a user state acquisition unit 707 are added to the comfort degree display device 100 shown in FIG.
- the biometric information storage unit 861 stores biometric information of the user, such as a heart rate.
- the user state acquisition unit 707 acquires biological information such as the current user's heart rate and the current position of the user.
- the user state acquisition unit 707 acquires biological information such as the current user's heart rate and the current position of the user.
- the comfort level value generation unit 104 is the air conditioning acquired by the environmental data value acquisition unit 103 in step S103 of FIG. 50 and the user preference read out in step S101 of FIG. 50, the user attribute read out in step S102 of FIG.
- biological information such as the current user's heart rate acquired by the user state acquisition unit 707 in step S861 of FIG. 50, the current position of the user, and the user's user stored in the biological information storage unit 861 Based on the biological information, in step S 862 of FIG. 50, a comfort value indicating the comfort of the user in the air-conditioned space 40 is generated.
- the comfort value generation unit 104 immediately after the user walks, the comfort value generation unit 104 generates the user comfort value based on the temperature of the air-conditioned space 40 lower than normal. As a result, for example, even when the state of the user is different from normal, such as after walking, the comfort can be accurately displayed.
- the comfort degree display device of each embodiment can easily grasp the relevance between the degree of comfort and the environmental data, and can appropriately manage the air conditioning facility.
Landscapes
- Engineering & Computer Science (AREA)
- Chemical & Material Sciences (AREA)
- General Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Signal Processing (AREA)
- Combustion & Propulsion (AREA)
- Physics & Mathematics (AREA)
- Mathematical Physics (AREA)
- Fuzzy Systems (AREA)
- Human Computer Interaction (AREA)
- Theoretical Computer Science (AREA)
- General Physics & Mathematics (AREA)
- Air Conditioning Control Device (AREA)
Abstract
Description
(1)前記ユーザの快適度値の時間平均値または空間平均値
(2)前記ユーザの快適度値の時間中央値または空間中央値
(3)前記ユーザの快適度値の時間最大値または空間最大値
(4)前記ユーザの快適度値の時間最小値または空間最小値
(5)前記ユーザの快適度値の時間最頻値または空間最頻値
前記基本統計量算出部が算出する前記環境データ値基本統計量は、以下の(6)から(10)のグループを有すること、
(6)前記空調空間の環境データ値の時間平均値または空間平均値
(7)前記空調空間の環境データ値の時間中央値または空間中央値
(8)前記空調空間の環境データ値の時間最大値または空間最大値
(9)前記空調空間の環境データ値の時間最小値または空間最小値
(10)前記空調空間の環境データ値の時間最頻値または空間最頻値
としてもよい。
(1)前記ユーザのエリア快適度値の時間平均値または空間平均値
(2)前記ユーザのエリア快適度値の時間中央値または空間中央値
(3)前記ユーザのエリア快適度値の時間最大値または空間最大値
(4)前記ユーザのエリア快適度値の時間最小値または空間最小値
(5)前記ユーザのエリア快適度値の時間最頻値または空間最頻値
前記エリア基本統計量算出部が算出する前記エリア環境データ値基本統計量は、以下の(6)から(10)のグループを有すること、
(6)前記エリア環境データ値の時間平均値または空間平均値
(7)前記エリア環境データ値の時間中央値または空間中央値
(8)前記エリア環境データ値の時間最大値または空間最大値
(9)前記エリア環境データ値の時間最小値または空間最小値
(10)前記エリア環境データ値の時間最頻値または空間最頻値
としてもよい。
図1に示すように、第1実施形態の快適度表示装置100は、嗜好格納部101と、属性格納部102と、環境データ値取得部103と、快適度値生成部104と、表示データ生成部105と、表示部106とを含んでいる。快適度表示装置100は、図2に示す汎用コンピュータ10によって実現できる。
快適度値=α×PMV+β×F-γ×R-δ ・・・・・・・・・ (1)
快適度値は、PMVと同様、0が中立、+1がやや暖かい、+2は暖かい、+3は暑いと感じることを示す。また、快適度値は、逆に-1はやや涼しい、-2は涼しい、-3は寒いと感じることを示す。
PMV=(0.303e-0.036M+0.028L)×L ・・・・・ (2)
ここで、Lは、人体の熱負荷(W/m2)、Mは代謝量(W/m2)である。
PMVは、0が中立、+1がやや暖かい、+2は暖かい、+3は暑いと感じることを示す。また、PMVは、逆に-1はやや涼しい、-2は涼しい、-3は寒いと感じることを示す。-0.5<PMV<0.5がISOによるPMV値の推奨範囲とされている。
F=a×F1+b×F2+・・・ ・・・・・・・・ (3)
R=p×R1+q×R2+・・・ ・・・・・・・・ (4)
ここで、F1,F2,・・・は、「暑がり」、「寒がり」、「冷え性」、「乾燥肌」等のユーザの嗜好の各要素の度合いを示す数値である。嗜好情報の影響度Fは、嗜好情報に含まれる1又は複数の要素に基づき算出される。また、R1,R2,・・・は、「年齢」、「性別」、「身長」、「体重」、「体脂肪率」、「座席位置」等のユーザの属性の各要素の度合いを示す数値である。属性情報の影響度Rは、属性情報に含まれる1又は複数の要素に基づき算出される。また、a、b、・・・、p、q、・・・は係数である。
WBGT(屋外)=0.7Tw+0.2Tg+0.1T ・・・ (5)
ここでT:乾球温度(℃)、Tw:自然湿球温度(℃)、Tg:黒球温度(℃)、Tw:暴露した自然湿球温度(℃)。
Icl・s=1.33 /(M+0.74)-0.095 ・・・ (6)
OT=(hc×T+hr*Tr)/(hc+hr) ・・・ (7)
ここで、T:乾球温度(℃)、Tr:平均放射温度(℃)、hc:対流熱伝達率(W/℃m2)、hr:放射熱伝達率(W/℃m2)。
HOTV=T+(TVF/Ktv)+(ERF/Ktv)+(RHF/Ktv) ・(8)
ここで、T:乾球温度(℃)、Ktv:人体の湿り総合熱伝達率(W/℃m2)である。
ETV=T+(TVF/hv)+(ERF/hv)+(EHF/hv) ・・ (9)
ここで、T:乾球温度(℃)、ho:基準対流熱伝導率(W/℃m2)、hr:放射熱伝達率(W/℃m2)、hv=ho×Fclo+hr×Fcl、Fclo:基準着衣の伝導効率(ND)、Fcl:着衣の伝導効率(ND)である。
ETU=tao+(ΣNUATFi/hu)+(ΣTVFi/hu)
+(ΣERFLi/hu)+(ΣTVFri/hu)
+(ΣERFSi/hu)+(ΣEHFi/hu)
+(ΣTVFei/hu)+(ΣSECFj/hu) ・・ (10)
ここで、tao:代表気温(℃)、NUATFi:代表気温と部位i周辺の気温との差の影響を表す不均一気温場(W/m2)、TVFi:人体に対する風速の影響を表す温熱風速場(W/m2)、ERFLi:人体に対する長波長放射の影響を表す長波長有効放射場(W/m2)、TVFri:評価対象の環境条件と基準条件との差によって生じる長波放射による有効な温度変化を表す場(W/m2)、ERFSi:人体に対する短波放射(日射)の影響を表す短波長有効放射場(W/m2)、FHFi:人体に対する湿度の影響を表す有効湿度場(W/m2)、TVFei:評価対象の環境条件と基準条件との差によって生じる蒸発による有効な水蒸気圧変化を表す場(W/m2)、SECFj:代表部材に基づいて人体に対する接触面での伝導の影響を表す標準有効伝導場(W/m2)、hu=hv×fn+hdo×fd、hv=hco×Fcleo+hr×Fcle、hdo:代表部材の熱コンダクタンス(W/m2)、fn:全人体皮膚面積に対する非接触面積の比(ND)、fd:全人体皮膚面積に対する接触面積の比(ND)、hco:基準条件における対流熱伝達率(W/Km2)、hr:放射熱伝達率(W/m2)、Fcleo:基準条件における有効伝熱効率(ND)、Fcle:着衣の有効伝熱効率(ND)。
HIS(%)=(E/Emax)×100 ・・・・ (11)
ここで、E:人体が熱平衡を保つために必要な蒸発放散量(W/m2)、Emax:人体が完全に濡れた状態時の最大可能蒸発放熱量(W/m2)。
THI=0.72(Tv+Tw)+40.6 ・・・・ (12)
THI=0.81T+0.01RH(0.99T-14.3)+46.3 ・(13)
ここで、T:乾球温度(℃)、Tv:湿球温度(℃)、RH:相対湿度(%)。
TSI=a1(√U+a2)×(Tb-To)+a3 ・・ (13)
ここで、U:風速(m/s)、To:作用温度(℃)、Tb:基準温度(36.8℃)、a1,a2,a3:無次元定数。
EFTe=T+(TVFhta/hfL)+(ERFhtaL/hfL)
+(ECFhta/hfL)+(EHFETFe/hfL)
+(ERFhtaS/hfL) ・・・・・・・・・・・・ (14)
ここで、T:乾球温度(℃)、TVFhta:対流熱輸送に係る温熱風速場(W/m2)、ERFhtaL:屋外空間の長波長放射が考慮された長波長有効放射場(W/m2)、ECFhta:人体に対する接触面での伝導の影響を表す有効伝導場(W/m2)、EHFETFe:湿度の影響を表す有効湿度場(W/m2)、ERFhtaS:日射量の影響を表す屋外空間における短波長有効放射場(W/m2)、hfL:屋外における長波長放射を考慮した放射熱伝達率(W/m2k)。
tr=Σ(ti×Φi) ・・・・・・・・・・・・ (15)
ここで、ti:面i の表面温度(℃)、φi:面iの形態係数(ND)。
t* mrt=[tmrt 4+fp×ak×(I*/εp・σ)]0.25-273.2 ・(16)
ここで、tmrt:直達日射を含まない平均放射温度、fp:人体投影面積率(ND)、ak:短波長放射に対する吸収率(ND)、I*:法線面直達日射量(W/m2)、εp:着衣人体の放射率(=0.97(ND))、σ:ステファンボルツマン定数(5.67×10-8 (W/m2K4))。
WCI=(33-T)×(10.45+10U0.5-U) ・・・・ (17)
ここで、T:乾球温度(℃)、U:風速(m/s)。
次に図8及び図9を参照しながら第2実施形態の快適度表示装置200を説明する。また、図10及び図11を参照しながら第3実施形態の快適度表示装置250を説明する。その後、図12から図15を参照しながら快適度表示装置200、250の表示例を説明する。
図8に示すように、第2実施形態の快適度表示装置200では、図1を参照して説明した快適度表示装置100に基本統計量算出部207が追加されている。快適度表示装置200を構成する、嗜好格納部201、属性格納部202、環境データ値取得部203、快適度値生成部204、表示部206は、図1を参照して説明した快適度表示装置100の嗜好格納部101、属性格納部102、環境データ値取得部103、快適度値生成部104、表示部106と同様であるので、説明は省略する。
(1)ユーザの快適度値の時間平均値または空間平均値
(2)ユーザの快適度値の時間中央値または空間中央値
(3)ユーザの快適度値の時間最大値または空間最大値
(4)ユーザの快適度値の時間最小値または空間最小値
(5)ユーザの快適度値の時間最頻値または空間最頻値
(6)空調空間の環境データ値の時間平均値または空間平均値
(7)空調空間の環境データ値の時間中央値または空間中央値
(8)空調空間の環境データ値の時間最大値または空間最大値
(9)空調空間の環境データ値の時間最小値または空間最小値
(10)空調空間の環境データ値の時間最頻値または空間最頻値
図10及び図11に示すように、第3実施形態の快適度表示装置250の表示データ生成部255は、基本統計量算出部257が算出したユーザの快適度値を代表する快適度値基本統計量と空調空間40の環境データ値を代表する環境データ値基本統計量の内のいずれか1つまたは複数と、を合成して統計量表示データを生成して表示部256に出力する。表示データ生成部255は、快適度値生成部254の生成したユーザの快適度値、環境データ値取得部253が取得した環境データ値との合成は行わない。従って、快適度表示装置250は、表示部256に快適度の快適度値基本統計量と環境データの環境データ値基本統計量とのみを表示する。
次に、第2、第3実施形態の快適度表示装置200、250の表示例について説明する。
次に、図16、17を参照しながら、第4実施形態の快適度表示装置300について説明する。図16に示すように、第4実施形態の快適度表示装置300では、図1を参照して説明した快適度表示装置100に補完部307が追加されている。快適度表示装置300を構成する、嗜好格納部301、属性格納部302、環境データ値取得部303、快適度値生成部304、表示部306は、図1を参照して説明した快適度表示装置100の嗜好格納部101、属性格納部102、環境データ値取得部103、快適度値生成部104、表示部106と同じであるので、説明は省略する。
次に、図18から図20を参照して第5実施形態の快適度表示装置400を説明する。
このように、快適度表示装置400の表示データ生成部405は、異常検出部407が異常を検出したユーザの快適度値を他のユーザの快適度値と識別できる異常識別表示データを、ユーザの快適度値と空調空間40の環境データ値とを合成して生成するようにしてもよい。
図21に示すように、第6実施形態の快適度表示装置500は、図1に示す快適度表示装置100の快適度値生成部104に代えてタイプ別推奨領域生成部507を有する。快適度表示装置500を構成する環境データ値取得部503、表示部506は、図1を参照して説明した快適度表示装置100の環境データ値取得部103、表示部106と同じである。
次に、図24を参照しながら、第7実施形態の快適度表示装置550を説明する。図21を参照して説明した快適度表示装置500と同じ部分には、同じ符号を付して説明は省略する。
次に図25を参照しながら、第8実施形態の快適度表示装置600を説明する。図25に示す快適度表示装置600は、図1に示す快適度表示装置100の快適度値生成部104に代えてユーザ別推奨領域生成部607を有する。快適度表示装置600を構成する嗜好格納部601、属性格納部602、環境データ値取得部603、表示部606は、図1を参照して説明した快適度表示装置100の嗜好格納部101、属性格納部102、環境データ値取得部103、表示部106と同様である。
次に、図27を参照しながら、第9実施形態の快適度表示装置650を説明する。図25を参照して説明した快適度表示装置600と同じ部分には、同じ符号を付して説明は省略する。
次に図28~図30を参照しながら、第10実施形態の快適度表示装置700を説明する。図28に示すように、快適度表示装置700では、図1を参照して説明した快適度表示装置100にユーザ状態取得部707と推奨行動生成部708とが追加されている。快適度表示装置700を構成する嗜好格納部701、属性格納部702、環境データ値取得部703、表示部706は、図1を参照して説明した快適度表示装置100の嗜好格納部101、属性格納部102、環境データ値取得部103、表示部106と同じである。
図31を参照しながら第11実施形態の快適度表示装置580について説明する。図31に示すように、快適度表示装置580では、図21を参照して説明した快適度表示装置500に図1を参照して説明した快適度表示装置100の快適度値生成部104と同様の快適度値生成部504が追加されている。タイプ別推奨領域生成部507の動作は図23を参照して説明した快適度表示装置500の動作と同様である。
図33を参照しながら第12実施形態の快適度表示装置680を説明する。図33に示すように、快適度表示装置680では、図25を参照して説明した快適度表示装置600に図1を参照して説明した快適度表示装置100の快適度値生成部104と同様の快適度値生成部604が追加されている。ユーザ別推奨領域生成部607の動作は図25を参照して説明した快適度表示装置600の動作と同じである。
図34を参照しながら第13実施形態の快適度表示装置800を説明する。図34に示すように、快適度表示装置800では、図1を参照して説明した快適度表示装置100に、エリア情報格納部808が追加されている。また、快適度表示装置800は、快適度値生成部104、環境データ値取得部103、表示データ生成部105に代えて、エリア快適度値生成部804、エリア環境データ値取得部803、エリア表示データ生成部805、表示部806を有する。
図38に示すように、第14実施形態の快適度表示装置810では、図34を参照して説明した快適度表示装置800にエリア基本統計量算出部817が追加されている。快適度表示装置800を構成する、嗜好格納部101、属性格納部102、エリア環境データ値取得部803、エリア快適度値生成部804、表示部806は、図34を参照して説明した快適度表示装置800と同様であるので、説明は省略する。
(1)ユーザのエリア快適度値の時間平均値または空間平均値
(2)ユーザのエリア快適度値の時間中央値または空間中央値
(3)ユーザのエリア快適度値の時間最大値または空間最大値
(4)ユーザのエリア快適度値の時間最小値または空間最小値
(5)ユーザのエリア快適度値の時間最頻値または空間最頻値
(6)エリア環境データ値の時間平均値または空間平均値
(7)エリア環境データ値の時間中央値または空間中央値
(8)エリア環境データ値の時間最大値または空間最大値
(9)エリア環境データ値の時間最小値または空間最小値
(10)エリア環境データ値の時間最頻値または空間最頻値
図41に示すように、第15実施形態の快適度表示装置820のエリア表示データ生成部825は、エリア快適度値基本統計量の内のいずれか1つと、エリア環境データ値基本統計量の内のいずれか1つを合成してエリア統計量表示データを生成する。そして、表示部806が、1つまたは複数のエリア統計量表示データを表示する。エリア表示データ生成部825は、エリア快適度値生成部804の生成したユーザのエリア快適度値、エリア環境データ値取得部803の取得するエリア環境データ値との合成は行わない。従って、快適度表示装置820は、表示部806にエリア快適度のエリア快適度値基本統計量とエリア環境データのエリア環境データ値基本統計量とのみを表示する。
図44に示すように、第16実施形態の快適度表示装置830では、図34を参照して説明した快適度表示装置800にエリア情報入力部839が追加されている。
図45に示す快適度表示装置840では、図1を参照して説明した快適度表示装置100に電力情報取得部841が追加されている。
図47に示すように、第18実施形態の快適度表示装置850では、図38を参照して説明した快適度表示装置810にエリア快適度評価部851が追加されている。
図49に示すように、第19実施形態の快適度表示装置860では、図1に示す快適度表示装置100に生体情報格納部861、ユーザ状態取得部707が追加されている。
Claims (28)
- ユーザの空調環境に対する嗜好を格納した嗜好格納部と、
前記ユーザの属性を格納する属性格納部と、
空調空間の状況を表す環境データ値を取得する環境データ値取得部と、
前記嗜好格納部に格納した前記ユーザの嗜好と、前記属性格納部に格納した前記ユーザの属性と、前記環境データ値取得部が取得した前記空調空間の環境データ値とに基づいて前記ユーザの前記空調空間における快適性を示す快適度値を生成する快適度値生成部と、
前記快適度値生成部で生成した前記ユーザの快適度値と、前記環境データ値取得部が取得した前記空調空間の環境データ値と、を合成して表示データを生成する表示データ生成部と、
前記表示データを表示する表示部と、
を有することを特徴とする快適度表示装置。 - 請求項1に記載の快適度表示装置は、更に、
前記快適度値生成部で生成した前記ユーザの快適度値を代表する快適度値基本統計量と、前記環境データ値取得部が取得した前記空調空間の環境データ値を代表する環境データ値基本統計量と、を算出する基本統計量算出部を有し、
前記表示データ生成部は、前記ユーザの快適度値と、前記空調空間の環境データ値と、前記快適度値基本統計量と前記環境データ値基本統計量の内のいずれか1つまたは複数と、を合成して表示統合データを生成し、
前記表示部が、前記表示統合データを表示する快適度表示装置。 - 請求項2に記載の快適度表示装置であって、
前記基本統計量算出部が算出する前記快適度値基本統計量は、以下の(1)から(5)のグループを有し、
(1)前記ユーザの快適度値の時間平均値または空間平均値
(2)前記ユーザの快適度値の時間中央値または空間中央値
(3)前記ユーザの快適度値の時間最大値または空間最大値
(4)前記ユーザの快適度値の時間最小値または空間最小値
(5)前記ユーザの快適度値の時間最頻値または空間最頻値
前記基本統計量算出部が算出する前記環境データ値基本統計量は、以下の(6)から(10)のグループを有すること、
(6)前記空調空間の環境データ値の時間平均値または空間平均値
(7)前記空調空間の環境データ値の時間中央値または空間中央値
(8)前記空調空間の環境データ値の時間最大値または空間最大値
(9)前記空調空間の環境データ値の時間最小値または空間最小値
(10)前記空調空間の環境データ値の時間最頻値または空間最頻値
を特徴とする快適度表示装置。 - 請求項3に記載の快適度表示装置であって、
前記表示データ生成部は、
前記ユーザの快適度値と、前記空調空間の環境データ値と、前記(1)のグループの前記快適度値基本統計量と前記(6)のグループの前記環境データ値基本統計量の内のいずれか1つまたは複数、
或いは、前記ユーザの快適度値と、前記空調空間の環境データ値と、前記(2)のグループの前記快適度値基本統計量と前記(7)のグループの前記環境データ値基本統計量の内のいずれか1つまたは複数、
或いは、前記ユーザの快適度値と、前記空調空間の環境データ値と、前記(3)のグループの前記快適度値基本統計量と前記(8)のグループの前記環境データ値基本統計量の内のいずれか1つまたは複数、
或いは、前記ユーザの快適度値と、前記空調空間の環境データ値と、前記(4)のグループの前記快適度値基本統計量と前記(9)のグループの前記環境データ値基本統計量の内のいずれか1つまたは複数、
或いは、前記ユーザの快適度値と、前記空調空間の環境データ値と、前記(5)のグループの前記快適度値基本統計量と前記(10)のグループの前記環境データ値基本統計量の内のいずれか1つまたは複数、
を合成して前記表示統合データを生成する快適度表示装置。 - 請求項1に記載の快適度表示装置は、更に、
前記快適度値生成部で生成した前記ユーザの快適度値を代表する快適度値基本統計量と、前記環境データ値取得部が取得した前記空調空間の環境データ値を代表する環境データ値基本統計量と、を算出する基本統計量算出部を有し、
前記表示データ生成部は、前記快適度値基本統計量の内のいずれか1つと、前記環境データ値基本統計量の内のいずれか1つを合成して統計量表示データを生成し、
前記表示部が、前記統計量表示データを表示する快適度表示装置。 - 請求項5に記載の快適度表示装置であって、
前記基本統計量算出部が算出する前記快適度値基本統計量は、以下の(1)から(5)のグループを有し、
(1)前記ユーザの快適度値の時間平均値または空間平均値
(2)前記ユーザの快適度値の時間中央値または空間中央値
(3)前記ユーザの快適度値の時間最大値または空間最大値
(4)前記ユーザの快適度値の時間最小値または空間最小値
(5)前記ユーザの快適度値の時間最頻値または空間最頻値
前記基本統計量算出部が算出する前記環境データ値基本統計量は、以下の(6)から(10)のグループを有すること、
(6)前記空調空間の環境データ値の時間平均値または空間平均値
(7)前記空調空間の環境データ値の時間中央値または空間中央値
(8)前記空調空間の環境データ値の時間最大値または空間最大値
(9)前記空調空間の環境データ値の時間最小値または空間最小値
(10)前記空調空間の環境データ値の時間最頻値または空間最頻値
を特徴とする快適度表示装置。 - 請求項6に記載の快適度表示装置であって、
前記表示データ生成部は、
前記(1)のグループの前記快適度値基本統計量に含まれる2つの値のいずれか一方と、前記(6)のグループの前記環境データ値基本統計量に含まれる2つの値のいずれか一方、
或いは、前記(2)のグループの前記快適度値基本統計量に含まれる2つの値のいずれか一方と、前記(7)のグループの前記環境データ値基本統計量に含まれる2つの値のいずれか一方、
或いは、前記(3)のグループの前記快適度値基本統計量に含まれる2つの値のいずれか一方と、前記(8)のグループの前記環境データ値基本統計量に含まれる2つの値のいずれか一方、
或いは、前記(4)のグループの前記快適度値基本統計量に含まれる2つの値のいずれか一方と、前記(9)のグループの前記環境データ値基本統計量に含まれる2つの値のいずれか一方、
或いは、前記(5)のグループの前記快適度値基本統計量に含まれる2つの値のいずれか一方と、前記(10)のグループの前記環境データ値基本統計量に含まれる2つの値のいずれか一方、
を合成して前記統計量表示データを生成する快適度表示装置。 - 請求項1に記載の快適度表示装置であって、
前記空調空間は複数のエリアで構成され、
前記快適度表示装置は、更に、
前記空調空間の各エリアの構成情報を格納するエリア情報格納部と、
前記エリア情報格納部に格納された各エリアの構成情報を参照して各エリアの前記空調空間の状況を表すエリア環境データ値をエリア毎に取得するエリア環境データ値取得部と、
前記嗜好格納部に格納した前記ユーザの嗜好と、前記属性格納部に格納した前記ユーザの属性と、前記エリア環境データ値取得部が取得した前記エリア環境データ値とに基づいて前記ユーザの前記エリアにおける快適性を示すエリア快適度値を生成するエリア快適度値生成部と、
前記エリア快適度値生成部で生成した前記ユーザのエリア快適度値と、前記エリア環境データ値取得部が取得した前記エリア環境データ値と、を合成してエリア表示データを生成するエリア表示データ生成部と、を有し、
前記表示部が、1つまたは複数の前記エリア表示データを表示すること、
を特徴とする快適度表示装置。 - 請求項8に記載の快適度表示装置は、更に、
前記エリア快適度値生成部で生成した前記ユーザのエリア快適度値を代表するエリア快適度値基本統計量と、前記エリア環境データ値取得部が取得した前記エリア環境データ値を代表するエリア環境データ値基本統計量と、を算出するエリア基本統計量算出部を有し、
前記エリア表示データ生成部は、前記ユーザのエリア快適度値と、前記エリア環境データ値と、前記エリア快適度値基本統計量と前記エリア環境データ値基本統計量の内のいずれか1つまたは複数と、を合成してエリア表示統合データを生成し、
前記表示部が、1つまたは複数の前記エリア表示統合データを表示する快適度表示装置。 - 請求項9に記載の快適度表示装置であって、
前記エリア基本統計量算出部が算出する前記エリア快適度値基本統計量は、以下の(1)から(5)のグループを有し、
(1)前記ユーザのエリア快適度値の時間平均値または空間平均値
(2)前記ユーザのエリア快適度値の時間中央値または空間中央値
(3)前記ユーザのエリア快適度値の時間最大値または空間最大値
(4)前記ユーザのエリア快適度値の時間最小値または空間最小値
(5)前記ユーザのエリア快適度値の時間最頻値または空間最頻値
前記エリア基本統計量算出部が算出する前記エリア環境データ値基本統計量は、以下の(6)から(10)のグループを有すること、
(6)前記エリア環境データ値の時間平均値または空間平均値
(7)前記エリア環境データ値の時間中央値または空間中央値
(8)前記エリア環境データ値の時間最大値または空間最大値
(9)前記エリア環境データ値の時間最小値または空間最小値
(10)前記エリア環境データ値の時間最頻値または空間最頻値
を特徴とする快適度表示装置。 - 請求項10に記載の快適度表示装置であって、
前記エリア表示データ生成部は、
前記ユーザのエリア快適度値と、前記エリア環境データ値と、前記(1)のグループの前記エリア快適度値基本統計量と前記(6)のグループの前記エリア環境データ値基本統計量の内のいずれか1つまたは複数、
或いは、前記ユーザのエリア快適度値と、前記エリア環境データ値と、前記(2)のグループの前記エリア快適度値基本統計量と前記(7)のグループの前記エリア環境データ値基本統計量の内のいずれか1つまたは複数、
或いは、前記ユーザのエリア快適度値と、前記エリア環境データ値と、前記(3)のグループの前記エリア快適度値基本統計量と前記(8)のグループの前記エリア環境データ値基本統計量の内のいずれか1つまたは複数、
或いは、前記ユーザのエリア快適度値と、前記エリア環境データ値と、前記(4)のグループの前記エリア快適度値基本統計量と前記(9)のグループの前記エリア環境データ値基本統計量の内のいずれか1つまたは複数、
或いは、前記ユーザのエリア快適度値と、前記エリア環境データ値と、前記(5)のグループの前記エリア快適度値基本統計量と前記(10)のグループの前記エリア環境データ値基本統計量の内のいずれか1つまたは複数、
を合成して前記エリア表示統合データを生成する快適度表示装置。 - 請求項8に記載の快適度表示装置は、更に、
前記エリア快適度値生成部で生成した前記ユーザのエリア快適度値を代表するエリア快適度値基本統計量と、前記エリア環境データ値取得部が取得した前記エリア環境データ値を代表するエリア環境データ値基本統計量と、を算出するエリア基本統計量算出部を有し、
前記エリア表示データ生成部は、前記エリア快適度値基本統計量の内のいずれか1つと、前記エリア環境データ値基本統計量の内のいずれか1つを合成してエリア統計量表示データを生成し、
前記表示部が、1つまたは複数の前記エリア統計量表示データを表示する快適度表示装置。 - 請求項12に記載の快適度表示装置であって、
前記エリア基本統計量算出部が算出する前記エリア快適度値基本統計量は、以下の(1)から(5)を有し、
(1)前記ユーザのエリア快適度値の時間平均値または空間平均値
(2)前記ユーザのエリア快適度値の時間中央値または空間中央値
(3)前記ユーザのエリア快適度値の時間最大値または空間最大値
(4)前記ユーザのエリア快適度値の時間最小値または空間最小値
(5)前記ユーザのエリア快適度値の時間最頻値または空間最頻値
前記エリア基本統計量算出部が算出する前記エリア環境データ値基本統計量は、以下の(6)から(10)のグループを有すること、
(6)前記エリア環境データ値の時間平均値または空間平均値
(7)前記エリア環境データ値の時間中央値または空間中央値
(8)前記エリア環境データ値の時間最大値または空間最大値
(9)前記エリア環境データ値の時間最小値または空間最小値
(10)前記エリア環境データ値の時間最頻値または空間最頻値
を特徴とする快適度表示装置。 - 請求項13に記載の快適度表示装置であって、
前記エリア表示データ生成部は、
前記(1)のグループの前記エリア快適度値基本統計量に含まれる2つの値のいずれか一方と、前記(6)のグループの前記エリア環境データ値基本統計量に含まれる2つの値のいずれか一方、
或いは、前記(2)のグループの前記エリア快適度値基本統計量に含まれる2つの値のいずれか一方と、前記(7)のグループの前記エリア環境データ値基本統計量に含まれる2つの値のいずれか一方、
或いは、前記(3)のグループの前記エリア快適度値基本統計量に含まれる2つの値のいずれか一方と、前記(8)のグループの前記エリア環境データ値基本統計量に含まれる2つの値のいずれか一方、
或いは、前記(4)のグループの前記エリア快適度値基本統計量に含まれる2つの値のいずれか一方と、前記(9)のグループの前記エリア環境データ値基本統計量に含まれる2つの値のいずれか一方、
或いは、前記(5)のグループの前記エリア快適度値基本統計量に含まれる2つの値のいずれか一方と、前記(10)のグループの前記エリア環境データ値基本統計量に含まれる2つの値のいずれか一方、
を合成して前記エリア統計量表示データを生成する快適度表示装置。 - 請求項8から14のいずれか1項に記載の快適度表示装置は、更に、
前記エリア情報格納部に前記空調空間の前記エリアの構成情報を入力するエリア情報入力部を有する快適度表示装置。 - 請求項1に記載の快適度表示装置は、更に、
前記空調空間の機器に使用される電力データ値を取得する電力情報取得部を有し、
前記表示データ生成部が、前記快適度値生成部で生成した前記ユーザの快適度値と、前記環境データ値取得部が取得した前記空調空間の環境データ値と、前記電力情報取得部が取得した電力データ値とを合成して前記表示データを生成する快適度表示装置。 - 請求項8に記載の快適度表示装置は、更に、
前記エリア快適度値生成部で生成した前記ユーザのエリア快適度値を代表するエリア快適度値基本統計量を算出するエリア基本統計量算出部と、
前記エリア基本統計量算出部が算出する前記エリア快適度値基本統計量と、所定の閾値とを比較評価してエリア快適度評価を出力するエリア快適度評価部と、を有し、
前記エリア表示データ生成部は、前記エリア快適度値生成部で生成した前記ユーザのエリア快適度値と、前記エリア環境データ値取得部が取得した前記エリア環境データ値と、前記エリア快適度評価部が出力した前記エリア快適度評価と、を合成して前記エリア表示データを生成する快適度表示装置。 - 請求項1に記載の快適度表示装置は、更に、
前記ユーザの生体情報を格納する生体情報格納部と、
前記ユーザの現在状態量と前記ユーザの現在位置とを取得するユーザ状態取得部と、を有し、
前記快適度値生成部は、前記嗜好格納部に格納した前記ユーザの嗜好と、前記属性格納部に格納した前記ユーザの属性と、前記環境データ値取得部が取得した前記空調空間の環境データ値と、前記生体情報格納部に格納した前記ユーザの前記生体情報と、前記ユーザ状態取得部が取得した前記ユーザの現在状態量と前記ユーザの現在位置とに基づいて前記ユーザの前記空調空間における快適性を示す快適度値を生成する快適度表示装置。 - 請求項1に記載の快適度表示装置は、更に、
前記快適度値生成部で生成した離散値である前記ユーザの快適度値を補完して時間または空間に対する連続値を算出し、前記環境データ値取得部が取得した離散値である前記空調空間の環境データ値を補完して時間または空間に対する連続値を算出する補完部を有し、
前記表示データ生成部が、前記ユーザの快適度値の時間または空間に対する連続値のいずれか一方と、前記空調空間の環境データ値の時間または空間に対する連続値のいずれか一方とを合成して連続表示データを生成し、
前記表示部が、前記連続表示データを表示する快適度表示装置。 - 請求項1に記載の快適度表示装置は、更に、
前記ユーザの快適度値が快適限界範囲にない場合に異常を検出し、異常データを出力する異常検出部を有し、
前記表示データ生成部は、前記異常検出部が出力した異常データと、前記ユーザの快適度値と、前記空調空間の環境データ値とを合成して異常表示データを生成し、
前記表示部が、前記異常表示データを表示する快適度表示装置。 - 請求項1に記載の快適度表示装置は、更に、
前記ユーザの快適度値が快適限界範囲にない場合に異常を検出し、異常データを出力する異常検出部を有し、
前記表示データ生成部は、前記異常検出部が異常を検出した前記ユーザの快適度値を他のユーザの快適度値と識別できる異常識別表示データを、前記ユーザの快適度値と前記空調空間の環境データ値とを合成して生成し、
前記表示部が、前記異常識別表示データを表示する快適度表示装置。 - 請求項1に記載の快適度表示装置であって、
前記嗜好格納部は、タイプ別基準ユーザの空調環境に対する嗜好を格納し、
前記属性格納部は、前記タイプ別基準ユーザの属性を格納し、
前記快適度表示装置は、更に、
前記空調空間の領域毎に、前記嗜好格納部に格納した前記タイプ別基準ユーザの嗜好と、前記属性格納部に格納した前記タイプ別基準ユーザの属性と、前記環境データ値取得部が取得した前記空調空間の環境データ値とに基づいて前記タイプ別基準ユーザの快適度値を生成し、前記タイプ別基準ユーザの快適度値が所定範囲にある領域をタイプ別推奨領域に指定するタイプ別推奨領域生成部を有し、
前記表示データ生成部が、前記快適度値生成部で生成した前記ユーザの快適度値と、前記タイプ別推奨領域と、前記空調空間の環境データ値とを合成してタイプ別推奨領域表示データを生成し、
前記表示部が、前記タイプ別推奨領域表示データを表示する快適度表示装置。 - 請求項22に記載の快適度表示装置は、更に、
前記タイプ別推奨領域をプロジェクションマッピングまたは拡張現実で表示する移動先表示部を有する快適度表示装置。 - 請求項1または22に記載の快適度表示装置は、更に、
前記空調空間の領域毎に、前記嗜好格納部に格納した前記ユーザの嗜好と、前記属性格納部に格納した前記ユーザの属性と、前記環境データ値取得部が取得した前記空調空間の環境データ値とに基づいて前記ユーザの快適度値を生成し、前記ユーザの快適度値が所定範囲にある領域をユーザ別推奨領域に指定するユーザ別推奨領域生成部を有し、
前記表示データ生成部が、前記快適度値生成部で生成した前記ユーザの快適度値と、前記ユーザ別推奨領域と、前記空調空間の環境データ値とを合成してユーザ別推奨領域表示データを生成し、
前記表示部が、前記ユーザ別推奨領域表示データを表示する快適度表示装置。 - 請求項24に記載の快適度表示装置は、更に、
前記ユーザ別推奨領域をプロジェクションマッピングまたは拡張現実で表示する移動先表示部を有する快適度表示装置。 - 請求項1に記載の快適度表示装置は、更に、
前記ユーザの現在状態量と前記ユーザの現在位置とを取得するユーザ状態取得部を有し、
前記快適度値生成部は、前記嗜好格納部に格納した前記ユーザの嗜好と、前記属性格納部に格納した前記ユーザの属性と、前記環境データ値取得部が取得した前記空調空間の環境データ値と、前記ユーザ状態取得部が取得した前記ユーザの現在状態量と前記ユーザの現在位置とに基づいて前記ユーザの現在の快適性を示す現在快適度値を生成し、
前記快適度表示装置は、更に、
前記現在快適度値が所定範囲にない場合には、前記ユーザの快適度値が所定範囲に入るまで前記ユーザの状態量を現在状態量から変更して、前記ユーザの嗜好と、前記ユーザの属性と、前記空調空間の環境データ値と、前記ユーザの現在位置とに基づいて前記ユーザの快適度値を繰り返し生成して、前記ユーザの快適度値が所定範囲に入る前記ユーザの変更状態量を確定し、前記ユーザの現在状態量と前記変更状態量の差に基づいて前記ユーザの推奨行動を生成する推奨行動生成部を有し、
前記表示データ生成部は、前記快適度値生成部で生成した前記ユーザの前記現在快適度値と、前記空調空間の環境データ値と、前記推奨行動生成部が生成した前記推奨行動とを合成して推奨行動表示データを生成し、
前記表示部が、前記推奨行動表示データを表示する快適度表示装置。 - タイプ別基準ユーザの空調環境に対する嗜好を格納した嗜好格納部と、
前記タイプ別基準ユーザの属性を格納する属性格納部と、
空調空間の状況を表す環境データ値を取得する環境データ値取得部と、
前記空調空間の領域毎に、前記嗜好格納部に格納した前記タイプ別基準ユーザの嗜好と、前記属性格納部に格納した前記タイプ別基準ユーザの属性と、前記環境データ値取得部が取得した前記空調空間の環境データ値とに基づいて前記タイプ別基準ユーザの快適度値を生成し、前記タイプ別基準ユーザの快適度値が所定範囲にある領域をタイプ別推奨領域に指定するタイプ別推奨領域生成部と、
前記タイプ別推奨領域と、前記空調空間の環境データ値とを合成してタイプ別推奨領域表示データを生成する表示データ生成部と、
前記タイプ別推奨領域表示データを表示する表示部と、
を有することを特徴とする快適度表示装置。 - ユーザの空調環境に対する嗜好を格納した嗜好格納部と、
前記ユーザの属性を格納する属性格納部と、
空調空間の状況を表す環境データ値を取得する環境データ値取得部と、
前記空調空間の領域毎に、前記嗜好格納部に格納した前記ユーザの嗜好と、前記属性格納部に格納した前記ユーザの属性と、前記環境データ値取得部が取得した前記空調空間の環境データ値とに基づいて前記ユーザの快適度値を生成し、前記ユーザの快適度値が所定範囲にある領域をユーザ別推奨領域に指定するユーザ別推奨領域生成部と、
前記ユーザ別推奨領域と、前記空調空間の環境データ値とを合成してユーザ別推奨領域表示データを生成する表示データ生成部と、
前記ユーザ別推奨領域表示データを表示する表示部と、
を有することを特徴とする快適度表示装置。
Priority Applications (3)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| AU2018299309A AU2018299309A1 (en) | 2017-07-12 | 2018-06-28 | Comfort level display device |
| EP18831406.6A EP3633280B1 (en) | 2017-07-12 | 2018-06-28 | Comfort level display apparatus |
| US16/622,114 US11315295B2 (en) | 2017-07-12 | 2018-06-28 | Comfort level display apparatus that generates correlation information between user comfort levels and temperature changes |
Applications Claiming Priority (4)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP2017136079 | 2017-07-12 | ||
| JP2017-136079 | 2017-07-12 | ||
| JP2018-093490 | 2018-05-15 | ||
| JP2018093490A JP7037432B2 (ja) | 2017-07-12 | 2018-05-15 | 快適度表示装置 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2019013014A1 true WO2019013014A1 (ja) | 2019-01-17 |
Family
ID=65001672
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/JP2018/024709 Ceased WO2019013014A1 (ja) | 2017-07-12 | 2018-06-28 | 快適度表示装置 |
Country Status (2)
| Country | Link |
|---|---|
| US (1) | US11315295B2 (ja) |
| WO (1) | WO2019013014A1 (ja) |
Cited By (9)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP2021124246A (ja) * | 2020-02-05 | 2021-08-30 | 株式会社大林組 | 空調システム、および、空調機の制御方法 |
| JPWO2021199381A1 (ja) * | 2020-04-01 | 2021-10-07 | ||
| JPWO2021220391A1 (ja) * | 2020-04-28 | 2021-11-04 | ||
| CN115280355A (zh) * | 2020-03-18 | 2022-11-01 | 三菱电机株式会社 | 舒适性解析装置以及环境控制用指令装置 |
| CN115523657A (zh) * | 2022-08-24 | 2022-12-27 | 青岛海尔空调器有限总公司 | 用于空调器的控制方法及空调器 |
| JPWO2024048010A1 (ja) * | 2022-08-29 | 2024-03-07 | ||
| JPWO2024084648A1 (ja) * | 2022-10-20 | 2024-04-25 | ||
| WO2025099898A1 (ja) * | 2023-11-09 | 2025-05-15 | 三菱電機株式会社 | 温冷感推定装置、温冷感推定方法および温冷感推定プログラム |
| JP7724452B2 (ja) | 2023-02-08 | 2025-08-18 | パナソニックIpマネジメント株式会社 | 表示方法、端末装置、表示システム、及びプログラム |
Families Citing this family (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2019043834A1 (ja) * | 2017-08-30 | 2019-03-07 | 三菱電機株式会社 | 空調システム制御装置 |
| JP7014299B2 (ja) * | 2018-07-27 | 2022-02-01 | 日本電信電話株式会社 | 行動最適化装置、方法およびプログラム |
| EP4042074A4 (en) * | 2019-10-08 | 2023-11-08 | AMBI Labs Limited | HVAC CONTROL SYSTEM AND METHOD |
| CN112432316B (zh) * | 2020-11-23 | 2022-06-14 | 珠海格力电器股份有限公司 | 一种空调控制方法、装置、电子设备及存储介质 |
| US11970047B2 (en) * | 2020-12-01 | 2024-04-30 | Haier Us Appliance Solutions, Inc. | Recreational vehicle air conditioner and methods of operation |
| WO2022269903A1 (ja) * | 2021-06-25 | 2022-12-29 | 三菱電機株式会社 | 空調制御装置および空気調和機 |
| CN113376327B (zh) * | 2021-07-08 | 2023-01-17 | 海南海笙信息科技有限公司 | 基于大数据的环境监测信息管理方法及系统 |
Citations (9)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JPH0755226A (ja) * | 1993-08-10 | 1995-03-03 | Hitachi Ltd | 快適度センシング装置とそれを用いた居室環境制御機器 |
| JP2011089682A (ja) | 2009-10-21 | 2011-05-06 | Hitachi Ltd | エリア内環境制御システム及びエリア内環境制御方法 |
| JP2011250027A (ja) * | 2010-05-25 | 2011-12-08 | Panasonic Electric Works Co Ltd | リモートコントロール機器及び情報通信システム |
| JP2012234356A (ja) * | 2011-04-28 | 2012-11-29 | Takenaka Komuten Co Ltd | 行動喚起装置 |
| JP2013104632A (ja) | 2011-11-15 | 2013-05-30 | Stella Green Corp | 快適性分布評価方法、快適性分布評価システム、空調制御システム及びコンピュータプログラム |
| JP2014123277A (ja) * | 2012-12-21 | 2014-07-03 | Sony Corp | 表示制御システム及び記録媒体 |
| JP2014206779A (ja) * | 2013-04-10 | 2014-10-30 | 大阪瓦斯株式会社 | 座席指定システム |
| WO2016103560A1 (ja) * | 2014-12-25 | 2016-06-30 | パナソニックIpマネジメント株式会社 | 投影装置 |
| JP2016169925A (ja) * | 2015-03-13 | 2016-09-23 | 株式会社東芝 | 室内環境制御装置、室内環境制御方法及びコンピュータプログラム |
Family Cites Families (15)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP2011187030A (ja) | 2010-03-11 | 2011-09-22 | Omron Corp | 環境情報提供装置、環境情報提供装置連携システム、環境情報提供方法、および、表示装置 |
| FR2960045B1 (fr) * | 2010-05-12 | 2012-07-20 | Commissariat Energie Atomique | Controle personnalise du confort thermique d'un occupant d'un batiment |
| US20110313579A1 (en) * | 2010-05-25 | 2011-12-22 | Cheuk Ting Ling | Method for Energy Saving On Electrical Systems Using Habit Oriented Control |
| US8090477B1 (en) * | 2010-08-20 | 2012-01-03 | Ecofactor, Inc. | System and method for optimizing use of plug-in air conditioners and portable heaters |
| US8843239B2 (en) * | 2010-11-19 | 2014-09-23 | Nest Labs, Inc. | Methods, systems, and related architectures for managing network connected thermostats |
| US8195313B1 (en) * | 2010-11-19 | 2012-06-05 | Nest Labs, Inc. | Thermostat user interface |
| CA2735614A1 (en) * | 2011-04-04 | 2012-10-04 | Ecobee Inc. | Programming simulator for an hvac controller |
| JP5755556B2 (ja) | 2011-12-14 | 2015-07-29 | 三菱電機ビルテクノサービス株式会社 | 空調制御装置、空調制御システム及び空調制御プログラム |
| JP5382152B2 (ja) | 2012-01-31 | 2014-01-08 | 三菱電機株式会社 | 空気調和機 |
| US9098096B2 (en) * | 2012-04-05 | 2015-08-04 | Google Inc. | Continuous intelligent-control-system update using information requests directed to user devices |
| US20140277765A1 (en) | 2013-03-15 | 2014-09-18 | University Of Southern California | Human-building interaction framework for personalized comfort driven system operations in buildings |
| US9996091B2 (en) * | 2013-05-30 | 2018-06-12 | Honeywell International Inc. | Comfort controller with user feedback |
| JP2015132443A (ja) | 2014-01-15 | 2015-07-23 | 株式会社リコー | 機器制御システム、制御装置、機器制御方法及びプログラム |
| JP6303731B2 (ja) | 2014-03-31 | 2018-04-04 | ダイキン工業株式会社 | 温熱環境再現システム |
| US11009248B2 (en) * | 2018-04-10 | 2021-05-18 | Air2O Inc. | Adaptive comfort control system |
-
2018
- 2018-06-28 WO PCT/JP2018/024709 patent/WO2019013014A1/ja not_active Ceased
- 2018-06-28 US US16/622,114 patent/US11315295B2/en active Active
Patent Citations (9)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JPH0755226A (ja) * | 1993-08-10 | 1995-03-03 | Hitachi Ltd | 快適度センシング装置とそれを用いた居室環境制御機器 |
| JP2011089682A (ja) | 2009-10-21 | 2011-05-06 | Hitachi Ltd | エリア内環境制御システム及びエリア内環境制御方法 |
| JP2011250027A (ja) * | 2010-05-25 | 2011-12-08 | Panasonic Electric Works Co Ltd | リモートコントロール機器及び情報通信システム |
| JP2012234356A (ja) * | 2011-04-28 | 2012-11-29 | Takenaka Komuten Co Ltd | 行動喚起装置 |
| JP2013104632A (ja) | 2011-11-15 | 2013-05-30 | Stella Green Corp | 快適性分布評価方法、快適性分布評価システム、空調制御システム及びコンピュータプログラム |
| JP2014123277A (ja) * | 2012-12-21 | 2014-07-03 | Sony Corp | 表示制御システム及び記録媒体 |
| JP2014206779A (ja) * | 2013-04-10 | 2014-10-30 | 大阪瓦斯株式会社 | 座席指定システム |
| WO2016103560A1 (ja) * | 2014-12-25 | 2016-06-30 | パナソニックIpマネジメント株式会社 | 投影装置 |
| JP2016169925A (ja) * | 2015-03-13 | 2016-09-23 | 株式会社東芝 | 室内環境制御装置、室内環境制御方法及びコンピュータプログラム |
Non-Patent Citations (1)
| Title |
|---|
| See also references of EP3633280A4 |
Cited By (21)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP2021124246A (ja) * | 2020-02-05 | 2021-08-30 | 株式会社大林組 | 空調システム、および、空調機の制御方法 |
| JP7380276B2 (ja) | 2020-02-05 | 2023-11-15 | 株式会社大林組 | 空調システム、および、空調機の制御方法 |
| US11953220B2 (en) | 2020-03-18 | 2024-04-09 | Mitsubishi Electric Corporation | Comfort-analyzing device, environment-control command device, and comfort-analyzing method |
| CN115280355A (zh) * | 2020-03-18 | 2022-11-01 | 三菱电机株式会社 | 舒适性解析装置以及环境控制用指令装置 |
| US20230123057A1 (en) * | 2020-03-18 | 2023-04-20 | Mitsubishi Electric Corporation | Comfort-analyzing device, environment-control command device, and comfort-analyzing method |
| JPWO2021199381A1 (ja) * | 2020-04-01 | 2021-10-07 | ||
| JP7199597B2 (ja) | 2020-04-01 | 2023-01-05 | 三菱電機株式会社 | 空気調和システムおよび空気調和装置の制御方法 |
| JPWO2021220391A1 (ja) * | 2020-04-28 | 2021-11-04 | ||
| WO2021220391A1 (ja) * | 2020-04-28 | 2021-11-04 | 三菱電機株式会社 | 情報処理装置および空調システム |
| US11802711B2 (en) | 2020-04-28 | 2023-10-31 | Mitsubishi Electric Corporation | Information processing device and air conditioning system |
| JP7407915B2 (ja) | 2020-04-28 | 2024-01-04 | 三菱電機株式会社 | 情報処理装置および空調システム |
| CN115523657A (zh) * | 2022-08-24 | 2022-12-27 | 青岛海尔空调器有限总公司 | 用于空调器的控制方法及空调器 |
| WO2024048010A1 (ja) * | 2022-08-29 | 2024-03-07 | パナソニックIpマネジメント株式会社 | 設計方法、プログラム及び設計システム |
| JPWO2024048010A1 (ja) * | 2022-08-29 | 2024-03-07 | ||
| JP7825169B2 (ja) | 2022-08-29 | 2026-03-06 | パナソニックIpマネジメント株式会社 | 設計方法、プログラム及び設計システム |
| JPWO2024084648A1 (ja) * | 2022-10-20 | 2024-04-25 | ||
| WO2024084648A1 (ja) * | 2022-10-20 | 2024-04-25 | 三菱電機株式会社 | 空気調和機及び空気調和方法 |
| JP7551013B2 (ja) | 2022-10-20 | 2024-09-13 | 三菱電機株式会社 | 空気調和機及び空気調和方法 |
| JP7724452B2 (ja) | 2023-02-08 | 2025-08-18 | パナソニックIpマネジメント株式会社 | 表示方法、端末装置、表示システム、及びプログラム |
| WO2025099898A1 (ja) * | 2023-11-09 | 2025-05-15 | 三菱電機株式会社 | 温冷感推定装置、温冷感推定方法および温冷感推定プログラム |
| JP7738808B1 (ja) * | 2023-11-09 | 2025-09-12 | 三菱電機株式会社 | 温冷感推定装置、温冷感推定方法および温冷感推定プログラム |
Also Published As
| Publication number | Publication date |
|---|---|
| US20200134891A1 (en) | 2020-04-30 |
| US11315295B2 (en) | 2022-04-26 |
Similar Documents
| Publication | Publication Date | Title |
|---|---|---|
| WO2019013014A1 (ja) | 快適度表示装置 | |
| JP7037432B2 (ja) | 快適度表示装置 | |
| Cheng et al. | Thermal comfort in urban open spaces for Hong Kong | |
| Lau et al. | Dynamic response of pedestrian thermal comfort under outdoor transient conditions | |
| Hwang et al. | Field experiments on thermal comfort in campus classrooms in Taiwan | |
| Al-ajmi | Thermal comfort in air-conditioned mosques in the dry desert climate | |
| Staiger et al. | The perceived temperature–a versatile index for the assessment of the human thermal environment. Part A: scientific basics | |
| Zhang et al. | Thermal comfort investigation of naturally ventilated classrooms in a subtropical region | |
| Rupp et al. | Predicting thermal comfort in office buildings in a Brazilian temperate and humid climate | |
| Al-ajmi et al. | Indoor thermal conditions and thermal comfort in air-conditioned domestic buildings in the dry-desert climate of Kuwait | |
| Shahzad et al. | Preferred vs neutral temperatures and their implications on thermal comfort and energy use: Workplaces in Japan, Norway and the UK | |
| Peng et al. | Investigation of pregnant women thermal comfort in the waiting area of the hospital in South China, Guangzhou | |
| Jitkhajornwanich et al. | Interpretation of thermal responses of four subject groups in transitional spaces of buildings in Bangkok | |
| Yu et al. | Utility of cooling overshoot for energy efficient thermal comfort in temporarily occupied space | |
| De Dear et al. | Indoor climate and thermal comfort in high-rise public housing in an equatorial climate: a field-study in Singapore | |
| Dahlan et al. | Sensory and physiological assessment of spatial transient thermal environment changes at a tropical university campus | |
| Adrian et al. | Models for the indices of thermal comfort | |
| Johansson | Urban thermal comfort in the tropics | |
| JP2009109034A (ja) | 空調制御支援データ生成装置および空調制御支援データ生成方法 | |
| Houda et al. | An assessment of thermal comfort and users’“perceptions” in office buildings-case of arid areas with hot and dry climate | |
| JP2009109033A (ja) | 空調制御支援データ生成装置、空調制御支援データ表示装置、および空調制御支援データ生成方法 | |
| JP4672484B2 (ja) | 蓄熱変化量の検出システム | |
| Auliciems | Comfort, clothing and health | |
| Abdullah et al. | Determining the Adaptive Thermal Comfort and Preference Votes of Children in Public Primary Schools in the Hot Semi-arid Climatic Zone of Nigeria | |
| Chew et al. | Adaptive thermal comfort model for air-conditioned lecture halls in Malaysia |
Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| 121 | Ep: the epo has been informed by wipo that ep was designated in this application |
Ref document number: 18831406 Country of ref document: EP Kind code of ref document: A1 |
|
| ENP | Entry into the national phase |
Ref document number: 2018831406 Country of ref document: EP Effective date: 20200103 |
|
| NENP | Non-entry into the national phase |
Ref country code: DE |
|
| ENP | Entry into the national phase |
Ref document number: 2018299309 Country of ref document: AU Date of ref document: 20180628 Kind code of ref document: A |