WO2017013982A1 - Dispositif de gestion, procédé de gestion, terminal d'utilisateur, procédé de fonctionnement de terminal utilisateur, et programme - Google Patents
Dispositif de gestion, procédé de gestion, terminal d'utilisateur, procédé de fonctionnement de terminal utilisateur, et programme Download PDFInfo
- Publication number
- WO2017013982A1 WO2017013982A1 PCT/JP2016/068243 JP2016068243W WO2017013982A1 WO 2017013982 A1 WO2017013982 A1 WO 2017013982A1 JP 2016068243 W JP2016068243 W JP 2016068243W WO 2017013982 A1 WO2017013982 A1 WO 2017013982A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- power
- power generation
- data
- storage battery
- charged
- 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
- G06Q—INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
- G06Q50/00—Information and communication technology [ICT] specially adapted for implementation of business processes of specific business sectors, e.g. utilities or tourism
- G06Q50/06—Energy or water supply
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02J—ELECTRIC POWER NETWORKS; CIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
- H02J3/00—Circuit arrangements for AC mains or AC distribution networks
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02J—ELECTRIC POWER NETWORKS; CIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
- H02J3/00—Circuit arrangements for AC mains or AC distribution networks
- H02J3/28—Arrangements for balancing of the load in networks by storage of energy
- H02J3/32—Arrangements for balancing of the load in networks by storage of energy using batteries or super capacitors with converting means
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02J—ELECTRIC POWER NETWORKS; CIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
- H02J3/00—Circuit arrangements for AC mains or AC distribution networks
- H02J3/38—Arrangements for feeding a single network from two or more generators or sources in parallel; Arrangements for feeding already energised networks from additional generators or sources in parallel
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02J—ELECTRIC POWER NETWORKS; CIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
- H02J7/00—Circuit arrangements for charging or discharging batteries or for supplying loads from batteries
- H02J7/34—Parallel operation in networks using both storage and other DC sources, e.g. providing buffering
- H02J7/35—Parallel operation in networks using both storage and other DC sources, e.g. providing buffering with light sensitive cells
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E70/00—Other energy conversion or management systems reducing GHG emissions
- Y02E70/30—Systems combining energy storage with energy generation of non-fossil origin
Definitions
- the present invention relates to a management device, a management method, a user terminal, a user terminal operation method, and a program.
- Patent Document 1 The power transaction server described in Patent Literature 1 acquires a green certificate that proves that the power to be traded is green power generated by renewable energy, and the green certificate is acquired. In this case, it is disclosed that the electric power is handled as green electric power and traded.
- the inventors of the present invention have found the following new problems as a result of examining the power transaction between the power generation company and the power supply company.
- An object of the present invention is to provide a technique for proving that green power is charged in a storage battery.
- Power generation data acquisition means for acquiring power generation data indicating a temporal change in power generated by a power generation device that generates power using renewable energy;
- Charging data acquisition means for acquiring charging data indicating a time change of electric power charged by the storage battery;
- output means for outputting information indicating that the power generated by the power generator is charged in the storage battery;
- a management device is provided.
- Green power guaranteed power amount acquisition means for acquiring a green power guaranteed power amount that is generated by a power generation device that generates power using renewable energy and is determined to have been charged in a storage battery; Display means for displaying the guaranteed amount of green power; A user terminal is provided.
- Computer Power generation data acquisition means for acquiring power generation data indicating a temporal change in power generated by a power generation device that generates power using renewable energy;
- Charging data acquisition means for acquiring charging data indicating a time change of electric power charged by the storage battery;
- output means for outputting information indicating that the power generated by the power generator is charged in the storage battery,
- a program for functioning as a server is provided.
- Computer Green power guaranteed power amount acquisition means for acquiring a green power guaranteed power amount that is generated by a power generation device that generates power using renewable energy and is determined to be charged in a storage battery, Display means for displaying the guaranteed amount of green power, A program for functioning as a server is provided.
- Each unit included in the apparatus of the present embodiment is stored in a CPU (Central Processing Unit), a memory, a program loaded into the memory, a storage unit such as a hard disk storing the program (from the stage of shipping the apparatus in advance). It can also store programs downloaded from CDs (Compact Discs) and other servers and servers on the Internet), and any combination of hardware and software, centering on the network connection interface Realized.
- CPU Central Processing Unit
- CDs Compact Discs
- FIG. 1 is a diagram conceptually illustrating an example of a hardware configuration of an apparatus (a management apparatus, a user terminal, a data apparatus, etc.) according to the present embodiment.
- the apparatus of this embodiment includes, for example, a CPU 1A, a RAM (Random Access Memory) 2A, a ROM (Read Only Memory) 3A, a communication unit 8A, an auxiliary storage device 9A, and the like that are connected to each other via a bus 10A.
- the apparatus of the present embodiment may further include a display control unit 4A, a display 5A, an operation reception unit 6A, an operation unit 7A, and the like.
- the apparatus according to the present embodiment may include other elements such as a microphone and a speaker.
- the CPU 1A controls the entire computer of the apparatus together with each element.
- the ROM 3A includes an area for storing programs for operating the computer, various application programs, various setting data used when these programs operate.
- the RAM 2A includes an area for temporarily storing data, such as a work area for operating a program.
- the auxiliary storage device 9A is, for example, an HDD (Hard Disc Drive), and can store a large amount of data.
- the display 5A is, for example, a display device (LED (Light Emitting Diode) display, liquid crystal display, organic EL (Electro Luminescence) display, etc.).
- the display 5A may be a touch panel display integrated with a touch pad.
- the display control unit 4A reads data stored in a VRAM (Video RAM), performs predetermined processing on the read data, and then sends the data to the display 5A to display various screens.
- the operation reception unit 6A receives various operations via the operation unit 7A.
- the operation unit 7A includes operation keys, operation buttons, switches, a jog dial, a touch panel display, a keyboard, and the like.
- the communication unit 8A is wired and / or wirelessly connected to a network such as the Internet or a LAN (Local Area Network) and communicates with other electronic devices. Further, the communication unit 8A can directly communicate with another electronic device by wire and / or wireless to perform communication.
- a network such as the Internet or a LAN (Local Area Network)
- LAN Local Area Network
- the business facility of the power generation business 1 includes a power generation device 60 and a storage battery 70.
- the business facility of the power generation business 1 can include an information collection device 40, a measurement device 50, a distribution board 80, a communication line, and a power line.
- a solid line indicates a communication line
- a dotted line indicates a power line. Communication between devices can be performed by wire and / or wireless, and the communication standard is a design matter.
- the information collecting device 40 and the measuring device 50 are described separately and indicate that they are logically separated, but these may be physically integrated or separated. Good.
- the power generation device 60 generates power using renewable energy (eg, sunlight, wind power, geothermal heat, etc.).
- renewable energy eg, sunlight, wind power, geothermal heat, etc.
- the configuration of the power generation device 60 is realized according to the prior art.
- the power generated by the power generation device 60 is supplied to the system and the storage battery 70 via the distribution board 80.
- the grid is a power supply system managed by a power supply company.
- the green power generated by the power generation device 60 may be supplied to the storage battery 70 without passing through the distribution board 80.
- other devices may exist in the power network of the power generation company 1.
- the power output from the power generation device 60 may be input to the distribution board 80 or the storage battery 70 via a device such as a power conditioner (not shown).
- the storage battery 70 can receive and charge the power supplied from the power generation device 60 and the power supplied from the grid. And the storage battery 70 can supply the charged electric power to a system
- the configuration of the storage battery 70 can be realized according to the prior art.
- the measuring device 50 acquires power generation data indicating a time change of the power generated by the power generation device 60. In addition, the measuring device 50 acquires charging data indicating the time change of the power charged by the storage battery 70.
- the power generation data and the charging data are data in which the measurement date and time are associated with the measured power value.
- the measurement time interval is a design matter (eg, every 30 seconds, every 1 minute, every 5 minutes, etc.).
- the means by which the measuring device 50 acquires such power generation data and charging data is not particularly limited, and any means according to the conventional technology can be adopted.
- a current sensor and a voltage sensor may be installed at an arbitrary position on the power line, and the current (A) and voltage (V) at that position may be measured at a predetermined measurement timing (eg, every t seconds).
- the measuring apparatus 50 may perform arithmetic processing etc. with respect to the measurement data acquired from the said sensor, and may acquire electric power generation data and charge data.
- the senor may be provided in the power generation device 60 and the storage battery 70.
- the power generation device 60 and the storage battery 70 may be configured to measure generated power and charging power using the sensor.
- the measuring device 50 may acquire power generation data and charging data from the power generation device 60 and the storage battery 70.
- the measuring device 50 and the storage battery 70 are connected by a communication line, and the storage battery 70 is configured to transmit charging data measured by the own device to the measuring device 50.
- the measurement device 50 and the power generation device 60 may be connected by a communication line, and the power generation device 60 may be configured to transmit power generation data measured by the own device to the measurement device 50.
- the information collecting device 40 communicates with the measuring device 50 and acquires power generation data and charging data from the measuring device 50. Then, the information collection device 40 transmits the acquired power generation data and charging data to the management device 10 via the network 90 such as the Internet.
- the management device 10 may be a so-called cloud server, for example.
- the information collecting device 40 may transmit all of the power generation data and the charging data acquired from the measuring device 50 to the management device 10, or may transmit a part extracted from the data. Further, the transmission of data to the management apparatus 10 may be real-time processing or batch processing. For example, the information collection device 40 may transmit the power generation data and the charging data to the management device 10 at a predetermined time interval (eg, 30 seconds, 1 minute, 5 minutes, 30 minutes, 1 hour, 24 hours). .
- a predetermined time interval eg, 30 seconds, 1 minute, 5 minutes, 30 minutes, 1 hour, 24 hours.
- the management device 10 manages a plurality of power generation devices 60 and a plurality of storage batteries 70.
- the management device 10 may further manage a plurality of power generation companies 1 that manage the power generation device 60 and the storage battery 70.
- information related to the power generation device 60 and the storage battery 70 to be managed is registered in the management device 10 in advance.
- information regarding the power generation company 1 may be registered.
- FIG. 3 shows an example of registration information registered in the management apparatus 10.
- the ID (identification) of the power generation device 60 and the ID of the storage battery 70 that receives power supply from the power generation device 60 are registered in association with each other.
- these installation places and the user ID of the power generation company 1 which is managing are further matched.
- the installation location is represented by, for example, an address, a postal code, a latitude / longitude, and the like.
- the example in FIG. 3 is based on the assumption that the power generation device 60 and the storage battery 70 are installed in the same place and managed by the same power generation company 1.
- the power generation device 60 and the storage battery 70 that are associated with each other may be installed at locations separated from each other, or may be managed by different power generation companies 1.
- the item “user ID” in FIG. 3 can be divided into “user ID of power generation device 60” and “user ID of storage battery 70”.
- the item “installation location” in FIG. 3 can be divided into “installation location of the power generation device 60” and “installation location of the storage battery 70”.
- the management device 10 acquires power generation data for each power generation device 60 to be managed. Moreover, the management apparatus 10 acquires charge data for every storage battery 70 to be managed. Then, the management device 10 generates the power generated by the power generation device 60 for each pair of the power generation device 60 and the storage battery 70 that are associated with each other (hereinafter referred to as “corresponding pair”) based on the acquired power generation data and charging data. It is determined whether or not the storage battery 70 has been charged.
- corresponding pair the configuration of the management apparatus 10 will be described in detail.
- FIG. 4 shows an example of a functional block diagram of the management apparatus 10 of the present embodiment.
- the management apparatus 10 includes a power generation data acquisition unit 11, a charge data acquisition unit 12, and an output unit 13.
- the management device 10 may further include a data device 20 as shown in FIG.
- the data device 20 includes a data collection unit 21 that receives power generation data and charge data, and a data storage unit 22 that accumulates the power generation data and charge data received by the data collection unit 21.
- the data collection unit 21 can receive, for example, power generation data and charging data from the information collection device 40 shown in FIG.
- the power generation data received by the data collection unit 21 is associated with at least one of the power generation company 1 that is the data transmission source and the power generation device 60 that is managed by the power generation company 1.
- the charging data received by the data collection unit 21 is associated with at least one of the power generation company 1 that is the data transmission source and the storage battery 70 that is managed by the power generation company 1.
- FIG. 6 schematically shows an example of the power generation data stored in the data storage unit 22.
- the power generation data of the example is managed for each power generation device ID.
- the power generation data is time-series data in which the measurement date and time are associated with the measured generated power (measured value).
- FIG. 7 schematically shows an example of charging data stored in the data storage unit 22.
- the charging data of the example is managed for each storage battery ID.
- the charging data is time-series data in which the measurement date and time are associated with the measured charging power (measured value).
- the management device 10 does not have to have the data device 20. That is, the management device 10 and the data device 20 may be logically separated devices. In this case, the management device 10 is configured to be able to communicate with the data device 20 by any communication means and acquire the power generation data and the charging data accumulated in the data storage unit 22.
- the power generation data acquisition unit 11 acquires power generation data indicating a temporal change in generated power by the power generation apparatus 60 that generates power using renewable energy.
- the power generation data acquisition unit 11 may acquire power generation data from the data storage unit 22 of the data device 20.
- the power generation data acquisition unit 11 may acquire power generation data from the information collection device 40 (see FIG. 2) managed by each power generation company 1.
- the power generation data acquisition unit 11 acquires power generation data in association with at least one of the power generation company 1 and the power generation device 60.
- the charging data acquisition unit 12 acquires charging data indicating the time change of the electric power charged by the storage battery 70 (the storage battery 70 installed in the same company equipment as the power generation device 60). For example, the charging data acquisition unit 12 may acquire charging data from the data storage unit 22 of the data device 20. In addition, the charge data acquisition unit 12 may acquire charge data from the information collection device 40 (see FIG. 2) managed by each power generation company 1. In any case, the charging data acquisition unit 12 acquires charging data in association with at least one of the power generation company 1 and the storage battery 70.
- the output unit 13 outputs information indicating that the power generated by the power generation device 60 is charged in the storage battery 70 based on the power generation data and the charging data for each corresponding pair.
- the output unit 13 may output the information via a display, a printer, a mailer, or the like.
- the output unit 13 may input the information to the power amount management unit 15 described in the following embodiment.
- the output unit 13 may include a determination unit that determines, for each corresponding pair, whether or not the power generated by the power generation device 60 is charged in the storage battery 70 based on the similarity between the power generation data and the charge data. When the determination unit determines that the battery is charged, the output unit 13 may output information indicating that the power generated by the power generation device 60 is charged in the storage battery 70.
- the determination means is similar to the time change of the generated power by the power generation device 60 and the time change of the charged power charged in the storage battery 70 more than the predetermined level If it is, the power generated by the power generation device 60 during that period is determined to be charged in the storage battery 70.
- the determination means performs the following processing based on the power generation data and the charging data for each corresponding pair.
- the determination means extracts data of a predetermined time width (design items, for example, 30 seconds, 1 minute, 5 minutes, 15 minutes, 30 minutes, etc.) from the power generation data as the first processing target data. To do. Further, the determination unit extracts the data having the predetermined time width from the charging data as second processing target data.
- a predetermined time width design items, for example, 30 seconds, 1 minute, 5 minutes, 15 minutes, 30 minutes, etc.
- the determination unit determines whether the first processing target data and the second processing target data satisfy a predetermined condition. For example, the determination unit determines whether or not “condition 1: correlation coefficient is greater than or equal to a predetermined value” is satisfied. When the predetermined condition is satisfied, the determination unit determines that “the electric power indicated by the first processing target data is charged in the storage battery 70”.
- the determination unit calculates the integrated value (wh) of the generated power calculated from the first processing target data.
- the amount of power charged in the storage battery 70 from the power generation device 60 during the period may be determined.
- the determination unit may determine the integrated value (wh) of the charging power calculated from the second processing target data as the amount of power charged in the storage battery 70 from the power generation device 60 during the period.
- the timing at which the power generated by the power generation device 60 is measured as power generation data and the charging data for charging the power to the storage battery 70 As shown in FIG. 17, there is a time difference between the measurement timing and the measurement timing due to a shift in the measurement position of the power generation data and the charging data.
- the determination means extracts the first process target data and the second process target data in the process (1) in consideration of the time difference. For example, when the first processing target data having a predetermined time width is extracted from the date and time T, the determination unit may extract the second processing target data having a predetermined time width from the date and time (T + t). In this case, there is a deviation time t between the first processing target data and the second processing target data.
- the determination unit further satisfies at least one of the following conditions 2 to 4 in addition to the above condition 1, “the power indicated by the first process target data is It may be determined that the storage battery 70 is charged. "
- the charging power amount (wh) is an integrated value (wh) of charging power calculated from the second processing target data.
- the generated power amount (wh) is an integrated value (wh) of the generated power calculated from the first processing target data.
- the deviation time t between the first processing target data and the second processing target data is less than or equal to a predetermined value”
- the deviation time t is the deviation time t considered in the above-described process (1).
- the first processing target data and the second processing target data measured at a timing far away from the first processing target data (for example, the first processing target data and the second processing target data). Based on the degree of similarity between the measurement target data and the measurement timing deviation being 2 days or more, 1 month or more, etc., it is determined that “the power indicated by the first process target data has been charged in the storage battery 70”. Inconvenience can be avoided.
- Condition 4 Correlation coefficient of data after Fourier transform is a predetermined value or more”
- Each of the first processing target data and the second processing target data is Fourier transformed to obtain a value for each frequency (data after conversion).
- the correlation coefficient of the converted data is equal to or greater than a predetermined value, the condition 4 is satisfied.
- this condition in addition to condition 1, the similarity between the first process target data and the second process target data can be determined more strictly. As a result, it is expected that the accuracy of determination is further improved.
- the determination unit extracts first processing target data having a predetermined time width from the power generation data of the predetermined corresponding pair. For example, the determination unit extracts power generation data from 13:00 to 13:05 on January 1, 2015 as the first processing target data.
- the determination unit extracts the second processing target data having a predetermined time width from the charge data of the corresponding pair in consideration of the shift time t (one fixed value, a positive value). For example, the determination unit extracts charging data from 13:00 (00 + t) on January 1, 2015 to 13:00 (05 + t) as second processing target data.
- the determination means determines whether the extracted first processing target data and second processing target data satisfy a predetermined condition.
- the predetermined condition may be the condition 1 described above, or the condition 1 and at least one of the conditions 2 to 4 may be an AND condition.
- the determination unit determines that the power indicated by the first processing target data is charged in the storage battery 70. Then, the integrated value (wh) of the generated power calculated from the first processing target data or the integrated value (wh) of the charging power calculated from the second processing target data is generated during the period. 60 is determined as the amount of power charged in the storage battery 70 from 60.
- the determination unit determines that the power indicated by the first processing target data is not charged in the storage battery 70.
- the determination means extracts other first processing target data and other second processing target data from the power generation data and charging data of the corresponding pair, and repeats the same processing. For example, the determination unit extracts the power generation data from 13:05 to 13:10 on January 1, 2015 as the next first processing target data. Further, the determination unit extracts charging data from 13:00 (05 + t) on January 1, 2015 to 13:10 (10 + t) as the next second processing target data. Then, the same processing as described above is performed.
- the determination unit extracts first processing target data having a predetermined time width from the power generation data of the predetermined corresponding pair. For example, the determination unit extracts power generation data from 13:00 to 13:05 on January 1, 2015 as the first processing target data.
- the determination unit extracts second processing target data having a predetermined time width from the charge data of the corresponding pair in consideration of the shift time t. For example, the determination unit extracts charging data from 13:00 (00 + t) on January 1, 2015 to 13:00 (05 + t) as second processing target data. In the case of the example, the determination unit extracts a plurality of second processing target data based on a plurality of different values of t. For example, the determination unit increases or decreases the value of t by a predetermined value n (fixed value. Positive value) from a predetermined value m (fixed value. Positive value), and performs a plurality of second processes. Extract the target data.
- n fixed value. Positive value
- m fixed value. Positive value
- the determination means determines whether the extracted first processing target data and second processing target data satisfy a predetermined condition.
- the predetermined condition may be the condition 1 described above, or the condition 1 and at least one of the conditions 2 to 4 may be an AND condition.
- the determination unit determines whether the first processing target data and each of the plurality of second processing target data satisfy a predetermined condition.
- the determination unit charges the storage battery 70 with the electric power indicated by the first processing target data. It is determined that Then, the integrated value (wh) of the generated power calculated from the first processing target data or the integrated value (wh) of the charging power calculated from the second processing target data determined to satisfy a predetermined condition ) Is determined as the amount of electric power charged in the storage battery 70 from the power generation device 60 during the period.
- the determination unit charges the storage battery 70 with the electric power indicated by the first processing target data. Judge that it is not.
- the determination means extracts other first processing target data and other second processing target data from the power generation data and charging data of the corresponding pair, and repeats the same processing. For example, the determination unit extracts the power generation data from 13:05 to 13:10 on January 1, 2015 as the next first processing target data. Further, the determination unit extracts a plurality of pieces of second processing target data in the same manner as described above. Then, the same processing as described above is performed.
- the determination unit extracts second processing target data having a predetermined time width from the charging data of the predetermined corresponding pair. For example, the determination unit extracts the charging data from 13:00 to 13:05 on January 1, 2015 as the second processing target data.
- the determination unit extracts the first processing target data having a predetermined time width from the power generation data of the corresponding pair in consideration of the shift time t. For example, the determination unit extracts the power generation data from 13:00 (00-t) on January 1, 2015 to 13:00 (05-t) as the first processing target data. In the case of this example, the determination unit extracts a plurality of pieces of first processing target data based on a plurality of different values of t. For example, the determination unit increases or decreases the value of t by a predetermined value n (fixed value. Positive value) from a predetermined value m (fixed value. Positive value), and performs a plurality of first processes. Extract the target data.
- n fixed value. Positive value
- m fixed value. Positive value
- the determination means determines whether the extracted first processing target data and second processing target data satisfy a predetermined condition.
- the predetermined condition may be the condition 1 described above, or the condition 1 and at least one of the conditions 2 to 4 may be an AND condition.
- the determination unit determines whether each of the plurality of first processing target data and the second processing target data satisfies a predetermined condition. And when any one 1st process target data and 2nd process target data satisfy
- the determination unit when all the first processing target data and the second processing target data do not satisfy the predetermined condition, the determination unit generates power generated by the second processing target data by the power generation device 60. It is determined that it has not been done.
- the determination means extracts other first processing target data and other second processing target data from the power generation data and charging data of the corresponding pair, and repeats the same processing. For example, the determination unit extracts charging data from 13:05 to 13:10 on January 1, 2015 as the next second processing target data. Further, the determination unit extracts a plurality of pieces of first processing target data in the same manner as described above. Then, the same processing as described above is performed.
- the power generation device 60 of the present embodiment described above it is possible to accurately determine whether the power (green power) generated by the power generation device 60 is charged in the storage battery 70 for each corresponding pair. Further, according to the power generation device 60 of the present embodiment, the amount of green power charged in each storage battery 70 can be accurately determined.
- the power generation amount (wh) generated by the power generation device 60 in a predetermined time zone and the storage battery 70 in the time zone described above it is conceivable to compare the amount of charge (wh) charged in the above and make the above determination based on the similarity.
- the determination is based on the similarity (mode of time change) between the power generation data indicating the time change of the generated power by the power generation device 60 and the charge data indicating the time change of the power charged by the storage battery 70. It can be identified whether the power charged in the storage battery 70 in a certain time zone is supplied from either the grid or the power generation device 60.
- one power generation company 1 may manage one storage battery 70 and a plurality of power generation devices 60.
- the electric power generated by each of the plurality of power generation devices 60 is charged in one storage battery 70.
- the management apparatus 10 may manage the registration information in the form as shown in FIG. In the example shown in FIG. 12, the IDs of a plurality of power generation devices 60 can be associated with the ID of one storage battery 70.
- the determination unit of the management device 10 treats one storage battery 70 and one or more power generation devices 60 associated therewith as a corresponding group. And the said process performed for every corresponding
- the management device 10 may be installed in the facility of each power generation company 1 instead of being installed as a cloud server.
- the management device 10 may be provided as a device that is physically independent of the plurality of devices illustrated in FIG.
- the management device 10 may be physically integrated with any one of the information collection device 40, the measurement device 50, and the storage battery 70.
- the management device 10 processes all the generated power generation data and charging data, and determines whether the power generated by the power generation device 60 is charged in the storage battery 70 in all time zones. It was.
- each power generation company 1 may be able to specify a time zone in which the determination is desired and a time zone in which it is not desired. And the management apparatus 10 may perform the said determination using only the electric power generation data and charge data of the designated time slot
- the power generation company 1 does not seek the above determination in a time zone in which the power generation amount of the power generation device 60 is determined to be small based on the weather or the like, and is a time zone in which the power generation amount of the power generation device 60 is determined to be large
- the above determination may be obtained. In this way, the processing burden on the management apparatus 10 can be reduced. As a result, it is expected that the price paid by the power generation company 1 to receive the service of the management device 10 is suppressed.
- the time zone designation method is not particularly limited.
- the power generation company 1 requests determination using a user terminal such as a mobile phone, a smartphone, a tablet terminal, a PC, or an information collection device 40 (see FIG. 2).
- the time zone and the time zone that is not required may be transmitted to the management apparatus 10.
- the determination unit does not perform the determination using all of the measurement data (power generation data and charging data) measured every predetermined time, but uses only a characteristic part of the determination. May be performed. For example, the determination unit extracts the first processing target data and the second processing target data based on data of only the maximum point (upward peak point) and the minimum point (downward peak point) included in the measurement data. Further, it may be determined whether or not a predetermined condition is satisfied. In this way, it is possible to reduce the processing burden on the determination means.
- the information collection device 40 may extract only a characteristic part from the measurement data and transmit it to the management device 10. In this way, the communication burden can be reduced.
- the management device 10 of the present embodiment is different from the first embodiment in that it includes means for managing the amount of power charged in the storage battery 70 to be managed.
- Other configurations are the same as those of the management apparatus 10 of the first embodiment.
- FIG. 8 shows an example of a functional block diagram of the management apparatus 10 of the present embodiment.
- the management apparatus 10 includes a power generation data acquisition unit 11, a charge data acquisition unit 12, an output unit 13, and an electric energy management unit 15.
- the configurations of the power generation data acquisition unit 11, the charging data acquisition unit 12, and the output unit 13 are the same as those in the first embodiment.
- the power amount management unit 15 manages the amount of power charged in the storage battery 70 to be managed.
- the power amount management unit 15 uses the power amount charged in the storage battery 70 to generate the green power guaranteed power amount that is the amount of power determined by the determination unit that is generated by the power generation device 60 and charged in the storage battery 70, Manage by dividing into electric energy.
- FIG. 9 schematically shows an example of information (hereinafter “management information”) managed by the electric energy management unit 15.
- management information information managed by the electric energy management unit 15.
- the charging power amount at that time the guaranteed green power amount, and the other power amounts are associated with each other.
- the sum of the green power guarantee power amount and other power amounts is the charge power amount.
- the power amount management unit 15 updates the management information will be described.
- the electric energy management unit 15 may periodically acquire the latest value of the charged electric energy (wh) of the storage battery 70 from the information collection device 40 managed by each power generation company 1. Then, each time the latest value is acquired, the power amount management unit 15 may update the value in the column of the charged power amount of the management information to the latest value. Means for measuring the amount of charging power of the storage battery 70 and means for periodically transmitting the measurement value to the management device 10 can be realized in accordance with the prior art.
- the “information indicating that the power generated by the power generation device 60 has been charged in the storage battery 70” output by the output unit 13 may be input to the power amount management unit 15.
- the information includes information indicating the total amount of electric power (power amount) charged from the power generation device 60 to the storage battery 70.
- the electric energy management part 15 may update the value of the column of the green electric power guarantee electric energy of management information based on the information acquired from the output part 13. FIG. For example, if the information acquired from the output unit 13 includes information indicating that “the power amount of Xkwh is charged from the power generation device 60 to the storage battery 70”, the power amount management unit 15 corresponds to the storage battery 70. Xkwh is added to the value in the column of the guaranteed green power amount to be performed.
- the power amount management unit 15 sets the value in the column of the green power guaranteed power amount and other values as necessary.
- the values in the other electric energy columns are updated so that the sum of the values in the electric energy column becomes the value in the charging electric energy column.
- the management apparatus 10 of this embodiment may issue the certificate which guarantees that the electric power charged in the storage battery 70 is green electric power according to the request
- FIG. 9 Based on the management information (see FIG. 9), the management apparatus 10 issues the above certificate with the value in the column of green power guaranteed power amount as the upper limit.
- the electric energy management part 15 updates management information (refer FIG. 9) according to issue of the said certificate. For example, when the management device 10 issues a certificate certifying that “50 kwh” of green power is charged to the storage battery 70 of the storage battery ID “SE000001”, the power amount management unit 15 responds accordingly with the storage battery ID. “50 kwh” is subtracted from the value in the green power guaranteed electric energy column corresponding to “SE000001”.
- the power generation company 1 that wants to sell the power charged in the storage battery 70 managed by itself as green power requests the management device 10 to certify that the storage battery 70 is charged with green power. To do.
- the request includes the ID of the requested power generation company 1, the storage battery ID, the amount of power for which certification is required, and the like.
- the request may be transmitted to the management apparatus 10 via a network such as the Internet.
- the power generation company 1 inputs predetermined information (such as the amount of power required for proof) using a user terminal such as a mobile phone, a smartphone, a tablet terminal, a PC, or the information collection device 40 (see FIG. 2). Then, a request is transmitted to the management apparatus 10.
- the request may be notified to a worker of a business operator who issues a certificate via a telephone, a FAX, a window, or the like. In this case, the worker who has received the notification inputs the request content to the management apparatus 10.
- the management apparatus 10 that has received the request refers to the management information (see FIG. 9), and determines whether the requested power amount exceeds the value in the column of guaranteed green power amount. If not exceeded, the management apparatus 10 issues a certificate certifying that the storage battery 70 is charged with the required amount of green power.
- the certificate may be composed of electronic data and transmitted to the user terminal of the power generation company 1 via a network such as the Internet.
- the certificate is a paper medium and may be delivered to the power generation company 1 by FAX, mail, or the like.
- the power generation company 1 that has acquired the certificate presents the certificate to the power supply company, and makes an application for selling the predetermined amount of power charged in the storage battery 70 as green power. For example, when “a power supply company does not receive power sale as green power without the certificate”, the power generation company 1 can sell power as green power by indicating the certificate. It becomes possible. In addition, for example, “The power supply company sells power with the certificate (sold as green power) and sells power without the certificate (sells as power different from green power). The power generation company 1 may sell power at a higher price by showing the certificate, if there is a difference in the purchase unit price with the power (green power is higher). it can.
- the power amount management unit 15 When the power amount management unit 15 issues a certificate in response to a request from the power generation company 1, it updates the management information (see FIG. 9). Specifically, the power amount management unit 15 subtracts the issued power amount from the value in the green power guaranteed power amount column.
- the electric power charged in the storage battery 70 from the power generation device 60 at a certain timing is obtained after a considerable time has elapsed from the timing (hereinafter, “charging timing”) (eg, one month later, one year later, three years later). It is considered that it is not preferable to guarantee the green power.
- charging timing eg, one month later, one year later, three years later. It is considered that it is not preferable to guarantee the green power.
- charging / discharging of the storage battery 70 is performed with one day as one cycle. For this reason, it is considered that it is not appropriate to understand that the power charged in the storage battery 70 from the power generation device 60 on one day remains in the storage battery 70 after several years.
- the power amount management unit 15 may update the green power guaranteed power amount in the management information (see FIG. 9) in accordance with the elapsed time from the charging timing.
- the power amount management unit 15 may manage the charging timing of the power charged in the storage battery 70 from the power generation device 60 and the charge amount charged at that time.
- the charging timing can be specified based on the measurement date and time of the first processing target data and the second processing target data extracted from the power generation data and the charging data.
- the value in the column of green power guaranteed electric energy in the management information (see FIG. 9) is the sum of the charging electric energy in the information shown in FIG.
- the power amount management unit 15 may hold a reduction coefficient corresponding to the elapsed time from the charging timing in advance. And according to the elapsed time from charging timing, you may reduce gradually the charging electric energy of the information shown in FIG. 10 by multiplying the reduction coefficient corresponding to the said elapsed time.
- the business operator who manages the management apparatus 10 can grasp the charging power status of the storage battery 70 managed by each power generation business operator 1. Based on the grasped contents, it can be proved that the storage battery 70 is charged with green power.
- the management device 10 has a function of transmitting predetermined information to each power generation company 1 based on management information (see FIG. 9) managed by the power amount management unit 15. Different from the embodiment. Other configurations are the same as those in the first and second embodiments.
- the management device 10 transmits the value in the latest green power guaranteed power amount column to the user terminal of the power generation company 1 at that time, periodically or in response to a request from each power generation company 1.
- the user terminal is, for example, a mobile phone, a smartphone, a tablet terminal, a PC, an information collection device 40 (see FIG. 2), or the like.
- FIG. 13 shows an example of a functional block diagram of the user terminal 30 of the present embodiment.
- the user terminal 30 includes a green power guaranteed power amount acquisition unit 31 and a display unit 32.
- the green power guaranteed power amount acquisition unit 31 acquires, from the management device 10, the green power guaranteed power amount that is the power amount determined to be generated by the power generation device 60 and charged in the storage battery 70.
- the green power guaranteed power amount acquisition unit 31 may accept a user input that displays the status of the amount of power currently charged in the storage battery 70. And the green power guarantee electric energy acquisition part 31 may request
- the request includes at least one of a power generation company ID and a storage battery ID.
- the management device 10 searches for management information (see FIG. 9), acquires the value in the corresponding green power guaranteed power amount column, and returns it to the user terminal 30.
- the management device 10 may periodically transmit the value (latest value) in the column of the green power guaranteed power amount to the user terminal 30 of each power generation company 1.
- the display unit 32 displays the green power guaranteed power amount based on the information acquired by the green power guaranteed power amount acquiring unit 31. For example, as shown in FIG. 14, the display unit 32 displays “the amount of power that is currently charged in the storage battery 70 and the amount of power that is guaranteed as green power therein” on the display. Also good.
- the power generation company 1 can grasp the state of the electric power charged in the storage battery 70 based on such display information.
- the user terminal 30 may further include a power sale price calculation unit.
- the power sale price calculation unit holds the latest power sale unit price (the power sale price from the power generation company 1 to the power supply company).
- the user terminal 30 may periodically receive the latest power selling unit price from a predetermined server.
- the power sale price calculation unit is based on the latest power sale unit price and the green power guaranteed power amount acquired by the green power guaranteed power amount acquisition unit 31. Calculate the price.
- the display unit 32 displays the power sale price calculated by the power sale price calculation unit.
- the power generation company 1 determines the state of power charged in the storage battery 70 that it manages, that is, the current charge amount and the power that is guaranteed as green power therein. The amount of electric power can be easily grasped. As a result, the power generation company 1 can determine whether or not to sell the power charged in the storage battery 70 based on the information.
- the display unit 32 can calculate and display a power sale price when all the green power guaranteed power is sold at the current time based on the latest power sale unit price.
- the power generation company 1 can determine whether or not to sell the power charged in the storage battery 70 based on the information.
- the management device 10 allows the power generated by the power generation device 60 to be supplied to the storage battery 70 when the power generation data and the charging data satisfy a predetermined condition and the power generation data and the reference power generation data satisfy a predetermined condition. It is different from the first to third embodiments in that it is determined that the battery is charged. Other configurations are the same as those of the first to third embodiments.
- FIG. 15 shows an example of a functional block diagram of the management apparatus 10 of the present embodiment.
- the management device 10 includes a power generation data acquisition unit 11, a charge data acquisition unit 12, an output unit 13, and a reference power generation data acquisition unit 14.
- FIG. 16 shows another example of a functional block diagram of the management apparatus 10 of the present embodiment.
- the management device 10 includes a power generation data acquisition unit 11, a charge data acquisition unit 12, an output unit 13, a reference power generation data acquisition unit 14, and an electric energy management unit 15.
- the configurations of the power generation data acquisition unit 11, the charging data acquisition unit 12, and the power amount management unit 15 are the same as those in the first to third embodiments.
- the configuration of the output unit 13 and the reference power generation data acquisition unit 14 will be described.
- the reference power generation data acquisition unit 14 acquires reference power generation data indicating a temporal change in power generated by a reference power generation device that generates power using renewable energy.
- the reference power generation device generates power using the same type of renewable energy as the power generation device 60.
- the reference power generation device generates power under the same environment as the power generation device 60 to be determined by the determination unit (hereinafter, “power generation device 60 to be determined”).
- the power generation device 60 installed near (for example, the closest) the power generation device 60 to be determined among the power generation devices 60 managed by each of the plurality of power generation companies 1 may be used as the reference power generation device.
- the power generation device 60 installed near the determination target power generation device 60 (for example, the closest) can be identified by using the installation location information included in the registration information illustrated in FIGS. 3 and 12. In addition, as shown in FIG.
- the power generation company 1 when it is necessary to consider the case where a certain power generation company 1 manages a plurality of power generation apparatuses 60, the power generation company 1 different from the power generation company 1 having the power generation apparatus 60 to be determined
- the power generation device 60 managed by the power generation device 60 installed near (e.g., closest to) the power generation device 60 to be determined may be used as the reference power generation device. By selecting in this way, the reliability of the reference power generation data is improved.
- the reference power generation data acquisition unit 14 identifies the power generation device 60 installed near (for example, the nearest) the power generation device 60 to be determined as the reference power generation device, and then, for example, from the data storage unit 22
- the power generation data of the power generation device 60 can be acquired as reference power generation data.
- the determination means of the output unit 13 determines the validity of the power generation data based on the similarity between the power generation data and the reference power generation data.
- the similarity between the power generation data and the reference power generation data is equal to or higher than a predetermined level, that is, the determination unit is similar to the time change of the generated power by the power generation device 60 and the time change of the power generation by the reference power generation device for a predetermined level In this case, it is determined that the power generation data is valid (eg, not altered or the like).
- the determination means determines that the power generation data is not valid when the similarity between the power generation data and the reference power generation data is not equal to or higher than a predetermined level.
- the determination means performs the following processing based on the power generation data and the reference power generation data.
- the determination means uses data of a predetermined time width (design items, for example, 30 seconds, 1 minute, 5 minutes, 15 minutes, 30 minutes, etc.) as first processing target data from the power generation data. Extract. Further, the determination unit extracts the data having the predetermined time width as the third processing target data from the reference power generation data.
- a predetermined time width design items, for example, 30 seconds, 1 minute, 5 minutes, 15 minutes, 30 minutes, etc.
- the determination unit determines whether the first processing target data and the third processing target data satisfy a predetermined condition. For example, the determination unit determines whether or not “Condition 5: Correlation coefficient is a predetermined value or more” is satisfied. When the predetermined condition is satisfied, the determination unit determines that “the first processing target data is valid”. On the other hand, when the predetermined condition is not satisfied, the determination unit does not determine that “the first processing target data is valid”.
- the power generation device 60 and the reference power generation device are installed. A time difference occurs due to a shift in position, a shift in measurement position of data in each, and the like.
- the determination means extracts the first processing target data and the third processing target data in the processing of (1) ′ in consideration of the time difference. For example, when the first processing target data having a predetermined time width is extracted from the date and time T, the determination unit may extract the third processing target data having a predetermined time width from the date and time (T ⁇ t ′). . In this case, a deviation time t ′ exists between the first processing target data and the third processing target data.
- the determination means when further satisfying at least one of the following conditions 6 and 7 in addition to the above condition 5, “the first processing target data (power generation data) is valid It may be determined that “it is something”.
- the deviation time t ′ between the first processing target data and the third processing target data is equal to or less than a predetermined value”
- the deviation time t ′ is the deviation time t ′ considered in the process (1) ′ described above.
- the determination means has the same processing flow as the determination of the first processing target data and the second processing target data described in the first embodiment, and the first processing target data and the third processing target. Judgment with data can be performed.
- the determination unit is configured when the first processing target data and the second processing target data satisfy a predetermined condition, and the first processing target data and the third processing target data satisfy the predetermined condition. It is determined that the electric power indicated by the first processing target data is charged in the storage battery 70. In other cases, the determination unit does not determine that the power indicated by the first processing target data is charged in the storage battery 70.
- the reference power generation data acquisition unit 14 may specify a plurality of power generation devices 60 installed near the power generation device 60 to be determined by the determination unit as reference power generation devices. And the reference electric power generation data acquisition part 14 may acquire the reference electric power generation data of each of a some reference electric power generating apparatus.
- the determination unit extracts third processing target data from each of the plurality of reference power generation data. Then, it is determined whether the first processing target data and each of the plurality of third processing target data satisfy a predetermined condition. When the first processing target data and at least one third processing target data satisfy a predetermined condition, the determination unit determines that “the first processing target data is valid”. On the other hand, when the first processing target data and all the third processing target data do not satisfy the predetermined condition, the determination unit does not determine that “the first processing target data is valid”. .
- the reference power generation data acquisition unit 14 may acquire the result as reference power generation data.
- climate data eg, weather, temperature, air volume, cloud volume, etc.
- the validity of the power generation data acquired from the power generation company 1 can be determined. For this reason, the reliability of the determination result by the determination means can be further increased. As a result, the reliability of the certificate described in the second embodiment can be further increased.
- Power generation data acquisition means for acquiring power generation data indicating a temporal change in power generated by a power generation device that generates power using renewable energy;
- Charging data acquisition means for acquiring charging data indicating a time change of electric power charged by the storage battery;
- output means for outputting information indicating that the power generated by the power generator is charged in the storage battery;
- a management device 2.
- the management device includes a determination unit that determines whether the power generated by the power generation device is charged in the storage battery based on the similarity between the power generation data and the charge data.
- the determination unit is a management device that compares waveforms of the power generation data and the charging data. 4).
- the output means includes The first processing target data extracted from the power generation data with a predetermined time width and the second processing target data extracted from the charging data with the predetermined time width are “condition 1: correlation coefficient is a predetermined value. When the above is satisfied, information indicating that the power generated by the power generator is charged in the storage battery is output at the timing when the first processing target data and the second processing target data are measured. Management device. 5).
- the output means includes When the first processing target data and the second processing target data further satisfy at least one of the following conditions 2 to 4 in addition to the condition 1, "Condition 2: Charged energy ⁇ Generated energy” “Condition 3: A time difference t between the first processing target data and the second processing target data is a predetermined value or less” “Condition 4: Correlation coefficient of data after Fourier transform is a predetermined value or more”
- the management apparatus which outputs the information which shows that the said electric power generated by the said electric power generating apparatus was charged to the said storage battery at the timing when the said 1st process target data and the said 2nd process target data were measured. 6).
- Reference power generation data acquisition means for acquiring reference power generation data indicating a temporal change in generated power by a reference power generation device that generates power using renewable energy
- the output unit is a management device that outputs information indicating that the power generated by the power generation device is charged in the storage battery based on the power generation data, the charging data, and the reference power generation data. 7).
- the management device includes a determination unit that determines the validity of the power generation data based on the similarity between the power generation data and the reference power generation data. 8).
- the output means includes The first processing target data extracted from the power generation data with a predetermined time width and the third processing target data extracted from the reference power generation data with the predetermined time width are “condition 5: correlation coefficient is predetermined.
- the output means includes When the first processing target data and the third processing target data further satisfy at least one of the following conditions 6 and 7 in addition to the condition 5: “Condition 6: The time difference t ′ between the first processing target data and the third processing target data is a predetermined value or less” “Condition 7: Correlation coefficient of data after Fourier transform is a predetermined value or more”
- the management apparatus which outputs the information which shows that the said electric power generated by the said electric power generating apparatus was charged to the said storage battery at the timing when the said 1st process target data was measured. 10.
- the amount of power charged in the storage battery is managed by dividing it into a green power guaranteed power amount that is the amount of power generated by the power generation device and determined to be charged in the storage battery, and other power amounts.
- a management apparatus further comprising management means.
- the management device according to 10 The power amount management means is a management device that reduces the green power guaranteed power amount according to an elapsed time from a charging timing.
- Green power guaranteed power amount acquisition means for acquiring a green power guaranteed power amount that is generated by a power generation device that generates power using renewable energy and is determined to have been charged in a storage battery; Display means for displaying the guaranteed amount of green power; A user terminal. 13.
- the output method includes a determination step of determining whether the power generated by the power generation device is charged in the storage battery based on the similarity between the power generation data and the charging data. 13-3.
- In the management method described in 13-2 In the management method described in 13-2, In the determination step, a management method for comparing waveforms of the power generation data and the charging data.
- the first processing target data extracted from the power generation data with a predetermined time width and the second processing target data extracted from the charging data with the predetermined time width are “condition 1: correlation coefficient is a predetermined value.
- condition 1 correlation coefficient is a predetermined value.
- the computer further executes a reference power generation data acquisition step of acquiring reference power generation data indicating a temporal change in generated power by a reference power generation device that generates power using renewable energy,
- the output method includes a determination step of determining validity of the power generation data based on a similarity between the power generation data and the reference power generation data. 13-8.
- the first processing target data extracted from the power generation data with a predetermined time width and the third processing target data extracted from the reference power generation data with the predetermined time width are “condition 5: correlation coefficient is predetermined.
- the computer divides the amount of power charged in the storage battery into green power guaranteed power amount that is the amount of power generated by the power generation device and determined to be charged in the storage battery, and other power amount.
- the green power guaranteed power amount is reduced according to an elapsed time from the charging timing.
- Computer Power generation data acquisition means for acquiring power generation data indicating a temporal change in power generated by a power generation device that generates power using renewable energy; Charging data acquisition means for acquiring charging data indicating a time change of electric power charged by the storage battery; Based on the power generation data and the charging data, output means for outputting information indicating that the power generated by the power generator is charged in the storage battery, Program to function as. 14-2.
- the output means includes a determination means for determining whether the power generated by the power generation device is charged in the storage battery based on the similarity between the power generation data and the charging data. 14-3. In the program described in 14-2, The determination means is a program for comparing waveforms of the power generation data and the charging data. 14-4.
- the output means includes The first processing target data extracted from the power generation data with a predetermined time width and the second processing target data extracted from the charging data with the predetermined time width are “condition 1: correlation coefficient is a predetermined value. When the above is satisfied, information indicating that the power generated by the power generator is charged in the storage battery is output at the timing when the first processing target data and the second processing target data are measured. program. 14-5.
- the output means includes When the first processing target data and the second processing target data further satisfy at least one of the following conditions 2 to 4 in addition to the condition 1, "Condition 2: Charged energy ⁇ Generated energy” “Condition 3: A time difference t between the first processing target data and the second processing target data is a predetermined value or less” “Condition 4: Correlation coefficient of data after Fourier transform is a predetermined value or more”
- the program which outputs the information which shows that the said electric power generated by the said electric power generating apparatus was charged to the said storage battery at the timing when the said 1st process target data and the said 2nd process target data were measured. 14-6.
- the output means is a program for outputting information indicating that the power generated by the power generator is charged in the storage battery based on the power generation data, the charging data, and the reference power generation data. 14-7.
- the output unit includes a determination unit that determines the validity of the power generation data based on the similarity between the power generation data and the reference power generation data. 14-8.
- the output means includes The first processing target data extracted from the power generation data with a predetermined time width and the third processing target data extracted from the reference power generation data with the predetermined time width are “condition 5: correlation coefficient is predetermined.
- the output means includes When the first processing target data and the third processing target data further satisfy at least one of the following conditions 6 and 7 in addition to the condition 5: “Condition 6: The time difference t ′ between the first processing target data and the third processing target data is a predetermined value or less” “Condition 7: Correlation coefficient of data after Fourier transform is a predetermined value or more”
- the program which outputs the information which shows that the said electric power generated by the said electric power generating apparatus was charged by the said storage battery at the timing when the said 1st process object data was measured. 14-10.
- the computer divides the amount of power charged in the storage battery into green power guaranteed power amount that is the amount of power generated by the power generation device and determined to be charged in the storage battery, and other power amount.
- the power amount management means is a program for reducing the guaranteed green power amount according to the elapsed time from the charging timing. 15.
- Computer A green power guaranteed power amount acquisition step of acquiring a green power guaranteed power amount that is generated by a power generation device that generates power using renewable energy and is determined to be charged in a storage battery; A display step of displaying the green power guarantee power amount; Method of user terminal to execute 16.
- Computer Green power guaranteed power amount acquisition means for acquiring a green power guaranteed power amount that is generated by a power generation device that generates power using renewable energy and is determined to be charged in a storage battery, Display means for displaying the guaranteed amount of green power, Program to function as.
Landscapes
- Engineering & Computer Science (AREA)
- Power Engineering (AREA)
- Business, Economics & Management (AREA)
- Health & Medical Sciences (AREA)
- Economics (AREA)
- Public Health (AREA)
- Water Supply & Treatment (AREA)
- General Health & Medical Sciences (AREA)
- Human Resources & Organizations (AREA)
- Marketing (AREA)
- Primary Health Care (AREA)
- Strategic Management (AREA)
- Tourism & Hospitality (AREA)
- Physics & Mathematics (AREA)
- General Business, Economics & Management (AREA)
- General Physics & Mathematics (AREA)
- Theoretical Computer Science (AREA)
- Charge And Discharge Circuits For Batteries Or The Like (AREA)
- Supply And Distribution Of Alternating Current (AREA)
- Remote Monitoring And Control Of Power-Distribution Networks (AREA)
- Secondary Cells (AREA)
- Management, Administration, Business Operations System, And Electronic Commerce (AREA)
Abstract
L'invention concerne une technologie destiné à certifier qu'une batterie de stockage a été chargée avec de l'énergie verte. En vue de mettre en œuvre cette technologie, l'invention réalise un dispositif de gestion (10) comprenant : une unité d'acquisition de données de génération d'énergie (11) qui acquiert des données de génération d'énergie indiquant le changement au cours du temps dans l'énergie générée par un dispositif de génération d'énergie qui utilise de l'énergie renouvelable pour générer de l'énergie ; une unité d'acquisition de données de charge (12) qui acquiert des données de charge indiquant le changement au cours du temps dans l'énergie chargée dans une batterie de stockage d'énergie ; et une unité de sortie (13) qui, en se basant sur les données de génération d'énergie et les données de charge, délivre des informations indiquant que la batterie de stockage d'énergie a été chargée avec l'énergie générée par le dispositif de génération d'énergie.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP2017529509A JPWO2017013982A1 (ja) | 2015-07-23 | 2016-06-20 | 管理装置、管理方法、ユーザ端末、ユーザ端末の動作方法、及び、プログラム |
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP2015145842 | 2015-07-23 | ||
| JP2015-145842 | 2015-07-23 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2017013982A1 true WO2017013982A1 (fr) | 2017-01-26 |
Family
ID=57835089
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/JP2016/068243 Ceased WO2017013982A1 (fr) | 2015-07-23 | 2016-06-20 | Dispositif de gestion, procédé de gestion, terminal d'utilisateur, procédé de fonctionnement de terminal utilisateur, et programme |
Country Status (2)
| Country | Link |
|---|---|
| JP (1) | JPWO2017013982A1 (fr) |
| WO (1) | WO2017013982A1 (fr) |
Cited By (6)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2020141175A2 (fr) | 2018-12-31 | 2020-07-09 | Vito Nv | Procédés et systèmes de génération de garanties d'origine en temps réel et de détermination de l'état opérant d'un réseau électrique |
| EP3952058A4 (fr) * | 2019-03-25 | 2022-12-14 | Kyocera Corporation | Dispositif de gestion, système électrique, et procédé d'alimentation électrique |
| JP2023047830A (ja) * | 2021-09-27 | 2023-04-06 | Tis株式会社 | 情報処理装置、情報処理方法、及び情報処理プログラム |
| JP2024056897A (ja) * | 2019-12-27 | 2024-04-23 | 京セラ株式会社 | 電力管理システム及び電力管理方法 |
| WO2025062668A1 (fr) | 2023-09-19 | 2025-03-27 | 株式会社グリンバンク | Procédé de gestion de puissance, dispositif de gestion de puissance et système de traitement d'informations |
| EP4614754A4 (fr) * | 2022-12-06 | 2025-12-10 | Furukawa Electric Co Ltd | Convertisseur de puissance, système de puissance, procédé de commande pour convertisseur de puissance et programme |
Citations (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP2010128525A (ja) * | 2008-11-25 | 2010-06-10 | Sekisui Chem Co Ltd | グリーン電力の流通システム |
| JP2011155714A (ja) * | 2010-01-25 | 2011-08-11 | Sony Corp | 電力を効率的に管理する方法 |
| JP2011164700A (ja) * | 2010-02-04 | 2011-08-25 | Omron Corp | 電力需給システム、電力供給制御装置、電力受領制御装置、グリーン電力供給制御装置、グリーン電力受領制御装置、グリーン電力需給証明装置、電力配合制御装置、グリーン電力需給精算装置、移動体、建造物、グリーン電力需給システム、グリーン電力送受電方法、グリーン電力需給証明方法、電力配合方法、精算方法、および、電力配合プログラム |
| JP2012212347A (ja) * | 2011-03-31 | 2012-11-01 | Sony Corp | エネルギー充填装置、エネルギー貯蓄装置、エネルギー消費装置、及びグリーンエネルギーの管理方法 |
| JP2014010139A (ja) * | 2012-07-03 | 2014-01-20 | National Fisheries Univ | 動的設備の状態監視システムとその方法とそのプログラム |
-
2016
- 2016-06-20 JP JP2017529509A patent/JPWO2017013982A1/ja active Pending
- 2016-06-20 WO PCT/JP2016/068243 patent/WO2017013982A1/fr not_active Ceased
Patent Citations (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP2010128525A (ja) * | 2008-11-25 | 2010-06-10 | Sekisui Chem Co Ltd | グリーン電力の流通システム |
| JP2011155714A (ja) * | 2010-01-25 | 2011-08-11 | Sony Corp | 電力を効率的に管理する方法 |
| JP2011164700A (ja) * | 2010-02-04 | 2011-08-25 | Omron Corp | 電力需給システム、電力供給制御装置、電力受領制御装置、グリーン電力供給制御装置、グリーン電力受領制御装置、グリーン電力需給証明装置、電力配合制御装置、グリーン電力需給精算装置、移動体、建造物、グリーン電力需給システム、グリーン電力送受電方法、グリーン電力需給証明方法、電力配合方法、精算方法、および、電力配合プログラム |
| JP2012212347A (ja) * | 2011-03-31 | 2012-11-01 | Sony Corp | エネルギー充填装置、エネルギー貯蓄装置、エネルギー消費装置、及びグリーンエネルギーの管理方法 |
| JP2014010139A (ja) * | 2012-07-03 | 2014-01-20 | National Fisheries Univ | 動的設備の状態監視システムとその方法とそのプログラム |
Cited By (12)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2020141175A2 (fr) | 2018-12-31 | 2020-07-09 | Vito Nv | Procédés et systèmes de génération de garanties d'origine en temps réel et de détermination de l'état opérant d'un réseau électrique |
| WO2020141175A3 (fr) * | 2018-12-31 | 2020-08-27 | Vito Nv | Procédés et systèmes de génération de garanties d'origine en temps réel et de détermination de l'état opérant d'un réseau électrique |
| EP3952058A4 (fr) * | 2019-03-25 | 2022-12-14 | Kyocera Corporation | Dispositif de gestion, système électrique, et procédé d'alimentation électrique |
| JP2024056897A (ja) * | 2019-12-27 | 2024-04-23 | 京セラ株式会社 | 電力管理システム及び電力管理方法 |
| JP7670887B2 (ja) | 2019-12-27 | 2025-04-30 | 京セラ株式会社 | 電力管理システム及び電力管理方法 |
| JP2025098092A (ja) * | 2019-12-27 | 2025-07-01 | 京セラ株式会社 | 電力管理システム及び電力管理方法 |
| JP7829084B2 (ja) | 2019-12-27 | 2026-03-12 | 京セラ株式会社 | 電力管理システム及び電力管理方法 |
| JP2023047830A (ja) * | 2021-09-27 | 2023-04-06 | Tis株式会社 | 情報処理装置、情報処理方法、及び情報処理プログラム |
| JP7777948B2 (ja) | 2021-09-27 | 2025-12-01 | Tis株式会社 | 情報処理装置、情報処理方法、及び情報処理プログラム |
| EP4614754A4 (fr) * | 2022-12-06 | 2025-12-10 | Furukawa Electric Co Ltd | Convertisseur de puissance, système de puissance, procédé de commande pour convertisseur de puissance et programme |
| WO2025062668A1 (fr) | 2023-09-19 | 2025-03-27 | 株式会社グリンバンク | Procédé de gestion de puissance, dispositif de gestion de puissance et système de traitement d'informations |
| EP4679656A1 (fr) | 2023-09-19 | 2026-01-14 | GreenBank Corporation | Procédé de gestion de puissance, dispositif de gestion de puissance et système de traitement d'informations |
Also Published As
| Publication number | Publication date |
|---|---|
| JPWO2017013982A1 (ja) | 2018-05-10 |
Similar Documents
| Publication | Publication Date | Title |
|---|---|---|
| WO2017013982A1 (fr) | Dispositif de gestion, procédé de gestion, terminal d'utilisateur, procédé de fonctionnement de terminal utilisateur, et programme | |
| US10152076B2 (en) | System and method for aggregation of controllable distributed energy assets | |
| JP6593325B2 (ja) | 監視装置、監視システム、監視方法及びプログラム | |
| CN103164815A (zh) | 电力管理装置、电力管理方法和需求通知装置 | |
| JP2017153268A (ja) | 電力需給予測システム、電力需給予測方法および電力需給予測プログラム | |
| WO2020213222A1 (fr) | Système de prédiction d'énergie, procédé de prédiction d'énergie, programme, support d'enregistrement et système de gestion | |
| JP2013090485A (ja) | Co2排出量監視装置、co2排出量監視方法、co2排出量監視プログラム、およびco2排出量監視システム | |
| JP6237103B2 (ja) | 情報収集装置、情報収集方法、及び情報収集プログラム | |
| WO2017154116A1 (fr) | Dispositif de régulation d'électricité, système de régulation d'électricité, procédé de régulation d'électricité et programme | |
| JP2008250542A (ja) | エネルギー消費算出システム及びエネルギー消費算出方法 | |
| JP6018348B1 (ja) | 節電支援装置、及び節電支援方法 | |
| JP2017060224A (ja) | アグリゲーション管理装置及び方法 | |
| WO2023166990A1 (fr) | Dispositif de gestion d'énergie renouvelable et procédé de gestion d'énergie renouvelable | |
| JP4606257B2 (ja) | デマンド要因分析システムおよびデマンド要因分析方法 | |
| JP2019185308A (ja) | 情報処理装置および情報処理方法 | |
| JP5422334B2 (ja) | 電力供給管理システム、電力供給管理方法、および電力供給管理プログラム | |
| JP2021189561A (ja) | 保守支援装置、保守支援方法、および保守支援プログラム | |
| US12107716B2 (en) | Stored power production source management device, method, and storage medium | |
| JP6018349B1 (ja) | 節電支援装置、及び節電支援方法 | |
| CN117561534A (zh) | 评价装置和程序 | |
| JP2017033541A (ja) | 情報端末の制御方法および情報システム | |
| JP2016218681A (ja) | インセンティブ予測量提示装置 | |
| US12113357B2 (en) | Control server, tracking system, communication method, and non-transitory recording medium | |
| JP7492661B2 (ja) | 太陽光発電最適化システム、太陽光発電最適化方法、サーバ装置、およびプログラム | |
| WO2021084659A1 (fr) | Dispositif de commande, procédé de commande et programme |
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: 16827546 Country of ref document: EP Kind code of ref document: A1 |
|
| ENP | Entry into the national phase |
Ref document number: 2017529509 Country of ref document: JP Kind code of ref document: A |
|
| NENP | Non-entry into the national phase |
Ref country code: DE |
|
| 122 | Ep: pct application non-entry in european phase |
Ref document number: 16827546 Country of ref document: EP Kind code of ref document: A1 |