WO2014006772A1 - デジタルスマート・セキュリティシステム、方法及びプログラム - Google Patents
デジタルスマート・セキュリティシステム、方法及びプログラム Download PDFInfo
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- WO2014006772A1 WO2014006772A1 PCT/JP2012/077265 JP2012077265W WO2014006772A1 WO 2014006772 A1 WO2014006772 A1 WO 2014006772A1 JP 2012077265 W JP2012077265 W JP 2012077265W WO 2014006772 A1 WO2014006772 A1 WO 2014006772A1
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- abnormality
- communication terminal
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- information
- respiration
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- G—PHYSICS
- G08—SIGNALLING
- G08B—SIGNALLING SYSTEMS, e.g. PERSONAL CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
- G08B25/00—Alarm systems in which the location of the alarm condition is signalled to a central station, e.g. fire or police telegraphic systems
- G08B25/01—Alarm systems in which the location of the alarm condition is signalled to a central station, e.g. fire or police telegraphic systems characterised by the transmission medium
- G08B25/016—Personal emergency signalling and security systems
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- G—PHYSICS
- G08—SIGNALLING
- G08B—SIGNALLING SYSTEMS, e.g. PERSONAL CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
- G08B25/00—Alarm systems in which the location of the alarm condition is signalled to a central station, e.g. fire or police telegraphic systems
- G08B25/01—Alarm systems in which the location of the alarm condition is signalled to a central station, e.g. fire or police telegraphic systems characterised by the transmission medium
- G08B25/08—Alarm systems in which the location of the alarm condition is signalled to a central station, e.g. fire or police telegraphic systems characterised by the transmission medium using communication transmission lines
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M11/00—Telephonic communication systems specially adapted for combination with other electrical systems
- H04M11/04—Telephonic communication systems specially adapted for combination with other electrical systems with alarm systems, e.g. fire, police or burglar alarm systems
-
- G—PHYSICS
- G08—SIGNALLING
- G08B—SIGNALLING SYSTEMS, e.g. PERSONAL CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
- G08B25/00—Alarm systems in which the location of the alarm condition is signalled to a central station, e.g. fire or police telegraphic systems
- G08B25/001—Alarm cancelling procedures or alarm forwarding decisions, e.g. based on absence of alarm confirmation
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- G—PHYSICS
- G08—SIGNALLING
- G08B—SIGNALLING SYSTEMS, e.g. PERSONAL CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
- G08B25/00—Alarm systems in which the location of the alarm condition is signalled to a central station, e.g. fire or police telegraphic systems
- G08B25/006—Alarm destination chosen according to type of event, e.g. in case of fire phone the fire service, in case of medical emergency phone the ambulance
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W4/00—Services specially adapted for wireless communication networks; Facilities therefor
- H04W4/90—Services for handling of emergency or hazardous situations, e.g. earthquake and tsunami warning systems [ETWS]
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W64/00—Locating users or terminals or network equipment for network management purposes, e.g. mobility management
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W76/00—Connection management
- H04W76/50—Connection management for emergency connections
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- G—PHYSICS
- G08—SIGNALLING
- G08B—SIGNALLING SYSTEMS, e.g. PERSONAL CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
- G08B21/00—Alarms responsive to a single specified undesired or abnormal condition and not otherwise provided for
- G08B21/02—Alarms for ensuring the safety of persons
- G08B21/04—Alarms for ensuring the safety of persons responsive to non-activity, e.g. of elderly persons
- G08B21/0407—Alarms for ensuring the safety of persons responsive to non-activity, e.g. of elderly persons based on behaviour analysis
- G08B21/043—Alarms for ensuring the safety of persons responsive to non-activity, e.g. of elderly persons based on behaviour analysis detecting an emergency event, e.g. a fall
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- G—PHYSICS
- G08—SIGNALLING
- G08B—SIGNALLING SYSTEMS, e.g. PERSONAL CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
- G08B21/00—Alarms responsive to a single specified undesired or abnormal condition and not otherwise provided for
- G08B21/02—Alarms for ensuring the safety of persons
- G08B21/04—Alarms for ensuring the safety of persons responsive to non-activity, e.g. of elderly persons
- G08B21/0438—Sensor means for detecting
- G08B21/0453—Sensor means for detecting worn on the body to detect health condition by physiological monitoring, e.g. electrocardiogram, temperature, breathing
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W4/00—Services specially adapted for wireless communication networks; Facilities therefor
- H04W4/02—Services making use of location information
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W4/00—Services specially adapted for wireless communication networks; Facilities therefor
- H04W4/02—Services making use of location information
- H04W4/023—Services making use of location information using mutual or relative location information between multiple location based services [LBS] targets or of distance thresholds
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W4/00—Services specially adapted for wireless communication networks; Facilities therefor
- H04W4/80—Services using short range communication, e.g. near-field communication [NFC], radio-frequency identification [RFID] or low energy communication
Definitions
- the present invention relates to a digital smart security system, method, and program capable of notifying a suspicious person of an abnormal situation on security without knowing the suspicious person.
- Stores such as department stores, supermarkets and convenience stores, banks, corporate offices, air terminals, currency exchanges, cash transport cars, buses, taxis, etc. handle financial products, cash and commodities. Visitors have not only Service-to-Others but also those who have criminal intentions, and the risk of criminal damage is great when combined with sales activities.
- Patent Document 1 describes a security system that enables recovery of an abnormality in the switching operation when an abnormality in the switching operation by an operator is detected.
- the control device that detects and reports an abnormality in the monitoring area associates the identification information given to the user, the identification information given to the administrator, and the e-mail address.
- the security mode setting switching operation is received, and an e-mail including the specified e-mail address is generated and transmitted according to the determination results.
- An object of the present invention is to provide a digital smart security system, method, and program that allow a victim to reliably report the occurrence of an emergency.
- the digital smart security system includes a breathing information obtaining unit that obtains breathing information from a breathing sensor that detects breathing of a person to be worn, and whether or not the breathing is stopped and restarted by the breathing information. And an abnormality determining means for determining the presence or absence of an abnormality, and a control means for reporting an abnormal situation when the abnormality judging means determines that there is an abnormal situation.
- the abnormality determining means determines that there is a security abnormality when the breathing is stopped and restarted for a predetermined period according to the breathing information, and when the breathing is stopped and does not restart,
- the control means determines that there is a health abnormality, and the control means makes a distinction between the security abnormality and the health abnormality of the personnel by reporting differently depending on the security abnormality and the health abnormality. can do.
- the abnormality determination unit determines that there is a different abnormality depending on which of a plurality of predetermined periods is stopped and restarted according to the respiration information, and the control unit responds to the different abnormality. By making different notifications, it is possible to make detailed notifications according to the content or degree of the abnormal situation.
- the abnormality determination unit determines that there is a different abnormality depending on which of a plurality of predetermined periods is stopped and restarted according to the respiration information, and the control unit responds to the different abnormality.
- a location information acquisition unit that detects the location of a plurality of communication terminal devices and acquires location information of the communication terminal device, and an emergency notification phone in which a security target building exists.
- a jurisdiction holding means for holding a jurisdiction wherein the control means refers to the jurisdiction holding means when the abnormality determination means determines that there is an abnormal situation, and a plurality of the communication terminal devices If any of the above exists in the jurisdiction, the mobile terminal in the jurisdiction where the building to be guarded is preferentially notified by preferentially reporting to the communication terminal device existing in the jurisdiction. It is possible to report quickly in the case of an emergency call from a mobile phone by Rukoto.
- the means for notifying is email transmission and video transmission, the person who has received the notification can accurately and quickly grasp the abnormal situation.
- the digital smart security method includes a breathing information acquisition step of acquiring breathing information from a breathing sensor that detects breathing of a person to be worn, and whether or not breathing is stopped and restarted for a predetermined period by the breathing information.
- An abnormality determination step for determining whether or not there is an abnormality based on the above, and a control step for notifying the abnormal situation when the abnormality determination step determines that there is an abnormal situation.
- an abnormality of a computer depends on whether or not respiration is stopped and resumed for a predetermined period of time by respiration information acquisition means for acquiring respiration information from a respiration sensor that detects respiration of a person to be worn.
- respiration information acquisition means for acquiring respiration information from a respiration sensor that detects respiration of a person to be worn.
- This is a program for functioning as a digital smart security system comprising abnormality determination means for determining presence / absence, and control means for reporting an abnormal situation when the abnormality determination means determines that there is an abnormal situation.
- FIG. 1 is a block diagram showing a configuration of a digital smart security system according to the first embodiment of the present invention.
- the digital smart security system includes a communication terminal device 100 that can be received by a user (person) and can receive respiration information from a respiration sensor 10 that detects respiration and outputs respiration information. And a monitoring device 200 that is a digital smart security system device main body that communicates via a telephone line 210.
- the user of the communication terminal device 100 can be referred to as a user when viewed from the digital smart security system. .
- the communication terminal device 100 may be incorporated in the monitoring device 200, but in the present embodiment, the two are described as separate structures.
- the communication terminal device 100 is a mobile phone, PHS (Personal Handy-Phone System), PDA (Personal Digital assistants) or a smart phone or the like, and transmits voice transmission and repelling device operation commands to the monitoring device 200 via the telephone line 210.
- communication terminal device 100 assumes the use of a mobile phone or a smartphone, and each individual can use it at various places (that is, current position).
- One of the communication terminal devices 100 is arranged in the security company 220 together with a PC (Personal Computer).
- the communication terminal device 100 can receive mail or the like including a moving image from the monitoring device 200 via the telephone line 210.
- the respiration sensor 10 captures the movement of the body surface due to respiration.
- the respiration sensor 10 is not the subject of the present invention, but will be described in order to understand the present invention.
- the respiration sensor 10 detects, for example, respiration based on a minute body movement (magnitude of respiration rate) based on a microwave (2.4 GHz) transmitted from the sensor using a microwave Doppler sensor.
- the respiratory sensor 10 uses an adhesive sensor with a built-in acoustic transducer, identifies the air flow (exhaled air / inspired air) in the airway, and continuously detects the respiratory rate.
- the respiration information obtained by the respiration sensor 10 is output to the communication terminal device 100 that is the subject of the present invention by the wireless communication method.
- the communication terminal device 100 controls a respiration information acquisition unit 101 that acquires respiration information from the respiration sensor 10, a GPS (Global Positioning System) function unit 102, a communication unit 103, a storage unit 104, and the entire apparatus. Unit 110.
- respiration information acquisition unit 101 that acquires respiration information from the respiration sensor 10
- GPS Global Positioning System
- the respiration information acquisition unit 101 acquires respiration information detected by the respiration sensor 10 wirelessly or by wire.
- the wireless communication system include Bluetooth (registered trademark), WiFi wireless including IEEE802.11b standard, specific low power wireless, ultra-wideband transmission system such as UWB (Ultra Wide Band), and infrared communication.
- the GPS function unit 102 receives a position information radio wave from a GPS satellite or the like.
- the GPS function unit 102 obtains position information by calculating current position information as two parameters of latitude / longitude from information received via the GPS antenna. Generally, altitude information is also obtained by GPS, but it is not used in this embodiment.
- information on the current position of the communication terminal apparatus 100 can be acquired by transmitting / receiving information to / from the mobile phone company server via the base station and the network. The acquired position information is transmitted to the monitoring device 200 in a timely manner.
- the communication unit 103 performs transmission / reception with a base station in the same manner as a general communication terminal device.
- the communication terminal device 100 transmits the position information of the communication terminal device 100 to the monitoring device 200 via the communication unit 103 at regular intervals. Send information.
- the storage unit 104 is composed of a nonvolatile memory such as an EEPROM, and retains information even after the main unit power is turned off.
- the storage unit 104 stores ID information of its own terminal, registration setting information for acquiring respiration information from the respiration sensor 10 (see FIG. 2), and a respiration stop pattern program for determining occurrence of abnormality.
- the control unit 110 is composed of a CPU and the like, and controls the communication terminal device 100 as a whole, and performs control for determining the occurrence of an abnormal situation and reporting the abnormal situation.
- the control unit 110 determines that an abnormal situation has occurred when the registration unit 111 for registering registration setting information for acquiring respiratory information and the respiratory pattern detected by the respiratory sensor 10 have a preset respiratory pattern.
- the registration unit 111 and the abnormality determination unit 112 are programs.
- the CPU reads the respiratory stop pattern program from the storage unit 104 as needed and loads it into the main storage device (not shown), and each function (described later) Shall be executed.
- the breathing stop pattern program may be stored in the storage unit 104 in advance, or may be taken into the communication terminal device 100 when necessary via another storage medium or communication medium.
- the monitoring device 200 includes a control unit 201, an input unit 202, and an alarm transmission unit 203.
- the monitoring device 200 may be a general server computer, personal computer, or the like.
- the control unit 201 is configured by a CPU or the like, controls the entire apparatus, and executes a security program to function as a digital smart security system.
- the control unit 201 has a memory (not shown) for storing information. Examples of the memory include a semiconductor memory, a magnetic recording device, an optical disk device, and a magneto-optical disk device.
- the control unit 201 tracks the location of the communication terminal device 100 as a report destination, acquires a location information acquisition unit 201a that acquires location information of the communication terminal device 100, and a jurisdiction that holds the jurisdiction of the police where the mobile phone is present Area holding part 201b.
- the jurisdiction of the police that receives mobile phones is based on prefecture units in Japan.
- the control unit 201 detects an emergency, the control unit 201 refers to the jurisdiction holding unit 201b and identifies the communication terminal device 100 as a report destination that exists in the police jurisdiction where the communication terminal device 100 as the report source exists. Then, control is performed to notify the specified communication terminal apparatus 100 with priority.
- the control unit 201 determines the voice transmission (warning to the intruder) transmitted from the communication terminal device 100 that has received the report and the repelling device operation command, and if these commands match, the speaker is connected via the input unit 202. It is also possible to output an audio signal to (not shown) and output an operation signal to a repelling device (not shown).
- the input unit 202 has a function as an abnormal situation detection means for detecting an abnormal situation based on an abnormality determination result from the communication terminal device 100 as a reporting source.
- the input unit 202 receives position information of each communication terminal device 100 transmitted from the communication terminal device 100 via the telephone line 210 and outputs these signals to the control unit 201.
- the alarm transmission unit 203 transmits an e-mail and a video including a moving image to the other communication terminal device 100 and the security company 140 via the telephone line 210.
- the security company 220 investigates abnormal situations when receiving e-mails or videos from the digital smart security system.
- the security company 220 is not an essential component of the digital smart security system according to the present embodiment.
- FIG. 2 is a diagram illustrating registration setting information of the respiration sensor 10 and the communication terminal device 100.
- the storage unit 104 of the communication terminal device 100 stores registration setting information 120 that is referred to when the respiratory stop pattern program is executed.
- the registration setting information 120 is set for each user of the system in association with the respiration information of the corresponding respiration sensor 10 and the communication terminal device 100.
- the registration setting information 120 is transferred to the monitoring device 200 in advance and registered in the monitoring device 200, and the monitoring device 200 can refer to the respiration information of the communication terminal device 100 for each user of the system.
- the registration setting information 120 associates the respiration sensor 10 with the communication terminal device 100 for each user.
- the items on the side of the respiration sensor 10 are the user's name, mobile number, and normal-time respiration information
- the communication terminal device 100 is the user's name, respiration sensor number, and monitoring device 200 (DS2) information. Normal breathing information.
- the breathing stop pattern program is registered in the storage unit 104.
- the respiratory stop pattern program is registered in the communication terminal device 100 and the monitoring device 200, respectively.
- FIG. 3 is a flowchart showing registration processing of the respiration sensor 10 and the communication terminal device 100. This flow is mainly executed by the registration unit 111 (FIG. 1) of the control unit 110 of the communication terminal device 100.
- step S1 the user sets information such as the user's name and the mobile phone number of the communication terminal device 100 that transmits the detected respiration information to the respiration sensor 10.
- step S ⁇ b> 2 the registration unit 111 performs user information (name, sex, age, etc.), a respiration sensor with the respiration sensor 10 through a pairing operation using a wireless communication method such as Bluetooth or specific low-power radio.
- Information is set and registered in the storage unit 104 as registration setting information 120 (see FIG. 2).
- the industry of the user to which this system is mainly applied is also registered. It is preferable to keep it.
- FIG. 4 is a flowchart showing the registration process of the monitoring apparatus 200 (FIG. 1). This flow is mainly executed by the control unit 201 of the monitoring device 200.
- step S11 the control unit 201 registers the user information transmitted from the communication terminal device 100 in advance as monitoring device registration setting information (not shown).
- the monitoring device registration setting information includes information on the user of the respiration sensor 10 associated with the communication terminal device 100, the mobile phone number of the communication terminal device, name, password, contact information, normal respiration rate (normal respiration information), and the like. sign up. Also, a breathing stop pattern program is registered.
- FIG. 5 is a flowchart showing monitoring control processing of the communication terminal apparatus 100 of the digital smart security system. This flow is mainly executed by the control unit 110 (FIG. 1) of the communication terminal device 100.
- step S ⁇ b> 21 the GPS function unit 102 acquires current position information of the communication terminal device 100.
- step S ⁇ b> 22 the control unit 110 transmits the position information of the communication terminal device 100 acquired via the communication unit 103 to the monitoring device 200 every predetermined time (for example, one hour).
- the input unit 202 receives position information from the communication terminal device 100.
- the monitoring apparatus 200 can know the latest position information of the communication terminal apparatus 100, for example, every hour.
- the user carries the respiration sensor 10 and the communication terminal device 100. For this reason, the monitoring apparatus 200 can know the current position of the user who uses the respiration sensor 10. If there is a margin in system resources, a position closer to the current position can be known by setting the predetermined time, for example, every 10 minutes.
- the location information of the user is an example of a more preferable form of the digital smart security system and is not essential. That is, it is only necessary that the monitoring device 200 can determine whether the user has changed due to the breathing stop pattern of the user using the respiration sensor 10. There is a unique effect that the user's incident can be notified without being known to the victim. However, if the current location of the user (communication terminal device 100) can be known together with the user's change notification, a more appropriate response can be taken.
- step S23 the respiration information acquisition unit 101 constantly acquires the respiration information of the user's respiration sensor 10, and the control unit 110 monitors the acquired respiration information of the user.
- step S24 the control unit 110 activates a breathing stop pattern program, and determines a breathing abnormality of the user based on the breathing information. Details of the respiratory abnormality determination will be described later with reference to FIG.
- step S25 the abnormality determination unit 112 determines whether or not the user's breathing is abnormal (excluding abnormal health situations due to diseases or the like). If the user's breathing is abnormal, the process proceeds to step S26. If the user's breathing is not abnormal, the process returns to step S21.
- step S ⁇ b> 26 the control unit 110 shifts to the emergency mode, and transmits an abnormality occurrence by mail to the monitoring device 200 via the communication unit 103 and transmits the latest position information of the communication terminal device 100.
- the emergency mode when it takes time to acquire the latest position information of the communication terminal device 100 (such as GPS position information acquisition failure), the notification of the occurrence of abnormality is first preceded without waiting for the acquisition of the latest position information. It is preferable that it is an aspect. Moreover, you may make it transmit the positional information acquired last time.
- FIG. 6 is a flowchart showing the respiratory abnormality determination process of the abnormality determination unit 112 of the communication terminal apparatus 100, and is a subroutine of step S24 in FIG.
- step S31 the respiratory information acquisition unit 101 acquires the respiratory information of the user's respiratory sensor 10.
- step S32 the abnormality determination unit 112 determines whether the user has stopped and resumed breathing for a certain period (for example, 10 to 15 seconds).
- a certain period for example, 10 to 15 seconds.
- the user is instructed in advance to stop and resume breathing for the predetermined period.
- the user is trained to stop and resume breathing for a certain period of time.
- the abnormal situation actually occurs, the user is put into practice. Examples of abnormal situations include convenience stores, department store robberies, bank robberies, bank transport robberies, and jewelery robberies.
- the abnormality determination unit 112 determines whether or not an abnormal situation on the user's health has occurred.
- Abnormal health conditions include physiological disorders of respiratory function.
- the breathing stop pattern is slightly different from the case where an abnormal situation occurs (the above-mentioned certain period is slightly different, breathing stop and restart are repeated, etc.) It can be said that it is a health abnormal situation, and is distinguished from the abnormal situation targeted by this system.
- step S33 If it is determined in step S33 that an abnormal situation on the user's health has not occurred, the abnormality determination unit 112 determines in step S34 that an abnormal situation has occurred in the user, and step S24 in FIG. Return to.
- step S32 determines whether the user has stopped and resumed breathing for a certain period in step S32, or if an abnormal situation has occurred in the user's health in step S33. If the abnormality determination unit 112 uses the use in step S35. It is determined that no abnormal situation has occurred in the guard, and the process returns to step S24 in FIG.
- Patent Document 2 describes a real-time monitoring system for physiological data using physiological parameters describing the respiratory function of a subject.
- Patent Document 3 describes an apparatus for detecting an emergency state of a subject's body using stress level information including respiratory rate information.
- the devices described in Patent Documents 2 and 3 both detect physiological changes that occur naturally regardless of the subject's intention based on the subject's respiration rate. It was difficult to distinguish between cases where breathing was disturbed due to urgent running and cases where breathing was disturbed due to abnormal security situations.
- this digital smart security system detects physiological changes based on the intention of the target person, only when there is a need to make a true report, it is surely notified without being known to the suspicious person. be able to.
- FIG. 7 is a flowchart showing the notification control operation of the monitoring device 200 of the digital smart security system. This flow is mainly executed by the control unit 201 (FIG. 1) of the monitoring apparatus 200.
- step S41 the control unit 201 waits until the input unit 202 receives the abnormality determination information from the communication terminal device 100 by mail.
- communication terminal apparatus 100 is composed of a mobile phone / smartphone or the like capable of mobile communication, and is used at the location (namely, location) of each individual.
- the monitoring device 200 stores a position of the communication terminal device 100 in response to a normal notification every predetermined time (for example, one hour) at a normal time when the abnormality determination is not notified from the communication terminal device 100.
- the control unit 201 in step S42, based on the received location information of the communication terminal device 100, any of the prefectures that are the police emergency call telephone receiving jurisdiction. Determine where you are.
- the control unit 201 preferentially sends a notification instruction mail to the police 230 (see FIG. 1) to the communication terminal device 100 determined to be present in the corresponding prefecture where the guarded building exists. Send.
- step S ⁇ b> 44 the control unit 201 of the monitoring apparatus 200 transmits a result mail notified to the police 230 to the other communication terminal apparatus 100 and the security company 220 (see FIG. 1), and ends this flow.
- notification is made preferentially to a report destination in the same police administrative district as the user (victim).
- this notification example 1 only reports to the other communication terminal device 100, the security company 220, and the police 230, and does not dare to warn or threaten the communication terminal device 100 of the user (victim). . That is, in order to protect the physical safety of the user (victim) without stimulating the burglary, considering the case where the user (victim) is in a dangerous situation where he cannot speak.
- This system has a unique effect that it is possible to report an abnormal situation surely by the user's intention without being known to the robber, and this reporting example 1 is an effect of the present system that reports an abnormal situation without being known to the robber. To the fullest.
- ⁇ Report example 2> This is an example of application to a customer service building such as a store, a bank, a company office, a station / air terminal, a money changer, a cash transport vehicle, a bus, and a taxi, and a private home (hereinafter referred to as a store).
- a customer service building such as a store, a bank, a company office, a station / air terminal, a money changer, a cash transport vehicle, a bus, and a taxi, and a private home (hereinafter referred to as a store).
- a plurality of surveillance cameras are installed in the above stores and the like, and a predetermined surveillance area can be photographed.
- FIG. 8 is a flowchart showing the notification control operation of the monitoring device 200 of a digital smart security system such as a store. This flow is mainly executed by the control unit 201 (FIG. 1) of the monitoring apparatus 200. Steps for performing the same processing as in FIG. 7 are given the same reference numerals.
- step S51 the control unit 201 waits until the input unit 202 receives abnormality determination information from the communication terminal device 100 by mail.
- the control unit 201 determines the related store office, headquarters, security company, etc. based on the received location information of the communication terminal device 100. Notifies the abnormality by e-mail and requests the user to take a picture with the surveillance camera.
- step S53 the captured real-time video of the corresponding user is visually confirmed.
- step S54 input of the result of visual confirmation by the input unit 202 is awaited. If an abnormality is confirmed as a result of the visual confirmation, in step S43, the control unit 201 preferentially polices the communication terminal device 100 determined to be present in the corresponding prefecture where the guarded building exists. Sending a notification instruction mail to 230.
- step S44 the control unit 201 of the monitoring device 200 transmits a result mail notified to the police 230 to the related parties, the other communication terminal devices 100, and the security company 220, and ends this flow.
- This report example 2 is similar to the report control in report example 1 above, considering the case where the user (victim) is in a dangerous situation where he / she cannot speak, and the user (damage Protect the body's safety.
- This system can report an abnormal situation surely by a user's intention without being known to a robber.
- the notification example 2 determines an abnormality while visually confirming a real-time video in the environment where the user exists, it can perform a more reliable abnormality determination and can implement a more appropriate countermeasure. .
- Report example 3 According to the reporting examples 1 and 2, an abnormal situation can be reported without being known to the robber.
- Report example 3 is an example of threatening a robber after reporting an abnormal situation without being known by the robber.
- FIG. 9 is a flowchart showing a notification control operation of the monitoring device 200 of the digital smart security system in a store or the like. This flow is mainly executed by the control unit 201 (FIG. 1) of the monitoring apparatus 200. Steps for performing the same processing as in FIG. 8 are given the same reference numerals.
- step S61 the control unit 201 waits until the input unit 202 receives abnormality determination information from the communication terminal device 100 by mail.
- step S62 the control unit 201 determines the related store office, headquarters, security company, etc. based on the received location information of the communication terminal device 100. While notifying the abnormality by mail, the communication terminal device 100 of the corresponding user is uttered to confirm the situation by automatic voice.
- step S63 the control unit 201 requests the user to shoot with the monitoring camera.
- a store office, a headquarters, a security company, etc. based on the user photographing request of the monitoring device 200, takes a video of the corresponding user at the corresponding store using a monitoring camera and transmits it to the monitoring device 200.
- step S64 the control unit 201 determines whether or not there is a response from the communication terminal device 100 of the corresponding user with respect to the situation confirmation by automatic voice.
- step S65 the control unit 201 re-notifies the emergency (abnormal situation) by attaching a photograph to the store or the like as a related party.
- step S66 When there is a response from the communication terminal device 100 of the user, the real-time video of the corresponding user photographed in step S66 is visually confirmed to determine whether there is an abnormality / question / no abnormality. If there is an abnormality as a result of the visual confirmation, in step S67, the control unit 201 requests the headquarters such as a store to make a voice report to the corresponding place in the store (the place where the user is located). In response to this request, the headquarters of the store or the like intimidates the corresponding location of the store by voice notification (such as a threatening sound or a warning message).
- voice notification such as a threatening sound or a warning message
- step S68 after confirming the emergency situation from the headquarters / security company of the store or the like, the control unit 201 determines, based on the position of the user, that the communication terminal is present in the corresponding prefecture where the security target building exists. A notification instruction mail to the police 150 is preferentially transmitted to the device 100.
- step S ⁇ b> 44 the control unit 201 of the monitoring device 200 transmits a result mail notified to the police 150 to the related party, the other communication terminal device 100 and the security company 140, and ends this flow.
- step S69 the control unit 201 requests the headquarters of the store or the like to take a predetermined action (such as an action notifying that it is not an emergency) to the corresponding user by voice. To do.
- the headquarters of the store or the like instructs the corresponding user to take a predetermined action by a voice message or the like.
- step S70 the control unit 201 determines whether or not the corresponding user has acted as instructed based on a response from the headquarters such as a store. If the corresponding user performs an action as instructed, it is determined that there is no abnormality and proceeds to step S71. If the corresponding user does not perform an action as instructed, it is determined that there is an abnormality and proceeds to step S68. .
- step S66 If there is no abnormality in step S66, or if the corresponding user performs an action as instructed in step S70, the control unit 201 releases the emergency mode to the user and other communication terminal devices 100 in step S71. This is notified, and this flow is complete
- the head office of the store that received the abnormal situation can prevent the incident by checking the video of the surveillance camera and threatening the robber.
- the monitoring device 200 detects an abnormal situation, watches a video of the monitoring camera, and threatens the intruder with a speaker.
- a repelling device (not shown) can be activated to repel intruders.
- Report example 4 like report example 3, is an example of threatening a robber after reporting an abnormal situation without being known by the burglar.
- FIG. 10 is a flowchart showing the notification control operation of the monitoring device 200 of the corporate / individual digital smart security system. This flow is mainly executed by the control unit 201 (FIG. 1) of the monitoring apparatus 200. Steps for performing the same processing as in FIG. 9 are given the same reference numerals.
- step S ⁇ b> 61 the control unit 201 waits until the input unit 202 receives abnormality determination information from the communication terminal device 100 by mail.
- the control unit 201 sends an e-mail to the family, the security company, the corporate headquarters, etc., which are related parties, based on the received location information of the communication terminal device 100. Is notified of the abnormality, and the communication terminal device 100 of the corresponding user is uttered to confirm the situation by automatic voice.
- step S82 the control unit 201 determines whether or not there is a response to the mail within a predetermined time (for example, 3 minutes) after issuing the mail to the family / corporate headquarters. If there is no response within a predetermined time (for example, 3 minutes) even if the mail is issued, in step S83, the control unit 201 notifies the other user (other communication terminal apparatus 100) that the user is abnormal by mail. A message indicating that there is a possibility that the error occurred has been notified.
- a predetermined time for example, 3 minutes
- step S ⁇ b> 64 the control unit 201 determines whether or not there is a response from the communication terminal device 100 of the corresponding user with respect to the situation confirmation by automatic voice. If there is no response from the user's communication terminal device 100, in step S65, the control unit 201 re-notifies the emergency situation by attaching a photo to the store or the like that is a related party.
- step S ⁇ b> 84 the control unit 201 requests photographing of the surroundings of the building with the monitoring camera. The store office, the headquarters, the security company, etc., shoot a moving image around the building with the monitoring camera based on the user shooting request of the monitoring device 200 and transmit it to the monitoring device 200.
- step S66 The real-time video of the corresponding user photographed in step S66 is visually checked to determine whether there is an abnormality / question / no abnormality. If there is an abnormality as a result of the visual confirmation, in step S67, the control unit 201 requests the headquarters such as a store to make a voice report to the corresponding place in the store (the place where the user is located). In response to this request, the headquarters of the store or the like intimidates the corresponding location of the store by voice notification (such as a threatening sound or a warning message).
- voice notification such as a threatening sound or a warning message
- step S68 after confirming the emergency situation from the headquarters / security company of the store or the like, the control unit 201 determines, based on the position of the user, that the communication terminal is present in the corresponding prefecture where the security target building exists. A notification instruction mail to the police 150 is preferentially transmitted to the device 100.
- step S ⁇ b> 44 the control unit 201 of the monitoring device 200 transmits a result mail notified to the police 230 to the related party, the other communication terminal device 100 and the security company 220, and ends this flow.
- step S69 the control unit 201 requests the headquarters of the store or the like to take a predetermined action (such as an action notifying that it is not an emergency) to the corresponding user by voice. To do.
- the headquarters of the store or the like instructs the corresponding user to take a predetermined action by a voice message or the like.
- step S70 the control unit 201 determines whether or not the corresponding user has acted as instructed based on a response from the headquarters such as a store. If the corresponding user performs an action as instructed, it is determined that there is no abnormality and proceeds to step S71. If the corresponding user does not perform an action as instructed, it is determined that there is an abnormality and proceeds to step S68. .
- step S66 If there is no abnormality in step S66, or if the corresponding user performs an action as instructed in step S70, the control unit 201 releases the emergency mode to the user and other communication terminal devices 100 in step S71. This is notified, and this flow is complete
- the monitoring device 200 is not noticed by the intimidator, notifies the store office, the headquarters, and the security company 220 of the abnormal situation, and the police 230 It is possible to make 110 calls (that is, emergency calls) in real time.
- the digital smart security system includes a respiration sensor 10 that detects a user's respiration, and a respiration pattern in which respiration detected by the respiration sensor 10 is set in advance.
- a respiration sensor 10 that detects a user's respiration
- an abnormality determination unit 112 that determines that an abnormal situation has occurred and an alarm transmission unit 203 that reports the abnormal situation based on the determination result of the occurrence of the abnormal situation are provided.
- the abnormality determination unit 112 determines that an abnormal situation has occurred when the user (communication terminal device 100) stops and resumes breathing for a certain period (for example, 10 to 15 seconds).
- the abnormality determination part 112 determines with the abnormal condition on the health of a user (communication terminal device 100) having generate
- a burglar breaks into a customer service building such as a store, bank, company office, station / air terminal, currency exchange, cash transport car, bus, taxi, etc. or an individual's home
- a customer service building such as a store, bank, company office, station / air terminal, currency exchange, cash transport car, bus, taxi, etc. or an individual's home
- the employee breathes for a certain period of time.
- By stopping and resuming it is possible to reliably report an abnormal situation, and a family member can report 110 to the police.
- the respiration sensor 10 stops due to the assault of the threatening person (robbery) or the communication terminal device 100 is stolen by the robbery
- the communication between the respiration sensor 10 and the communication terminal device 100 cannot be performed.
- the 110th report can be made to the police.
- the monitoring device 200 is not noticed by the intimidator and can report the abnormal situation to the head office of the store and the security company 220. 110 can be reported to the police 230 in real time.
- the person who received the notification can quickly make an emergency call to the police in the police administrative district in which the victim is located.
- the second embodiment of the present invention is an application example to a user, a cash transport vehicle, a bus, a taxi, or the like.
- the hardware configuration of the digital smart security system according to the second embodiment of the present invention is the same as that shown in FIG.
- FIG. 11 is a flowchart showing the registration process of the monitoring apparatus 200 (FIG. 1). This flow is mainly executed by the control unit 201 of the monitoring device 200.
- the control unit 201 registers in advance the behavior information of a user such as a cash transport vehicle, a bus, or a taxi as monitoring device registration setting information (not shown).
- the monitoring device registration setting information includes information on the user of the respiration sensor 10 associated with the communication terminal device 100, the mobile phone number of the communication terminal device, name, password, contact information, normal respiration rate (normal respiration information), and the like. sign up. Also, a breathing stop pattern program is registered.
- FIG. 12 is a flowchart showing the behavior monitoring control operation of the monitoring device 200 of the digital smart security system. This flow is mainly executed by the control unit 201 (FIG. 1) of the monitoring apparatus 200.
- the control unit 201 sets the mode setting of the communication terminal device 100 to the behavior monitoring mode when the user is a user such as a cash transport vehicle, a bus, or a taxi.
- the mode setting of the communication terminal device 100 is set to the behavior monitoring mode.
- the communication terminal device 100 may first set the behavior monitoring mode, notify the monitoring device 200 of the behavior monitoring mode setting, and the monitoring device 200 may set the behavior monitoring mode.
- step S102 the control unit 201 acquires the position information of the communication terminal device 100 transmitted from the communication terminal device 100, for example, every 30 minutes.
- the notification of position information by GPS in the present embodiment is preferably a predetermined time (for example, 30 minutes) shorter than the predetermined time (for example, 1 hour) in the first embodiment. That is, a user (communication terminal device 100) such as a cash transport vehicle, a bus, or a taxi may move on the vehicle, and in this case, the current position may change greatly. Therefore, it is preferable that the position information acquisition be performed for a time shorter than the predetermined time of the first embodiment.
- the position information can be continuously acquired by an autonomous navigation system using a gyro. Furthermore, when the communication terminal device 100 is in a place where there is no wireless communication, the monitoring device 200 cannot receive the position of the communication terminal device 100, but when the communication terminal device 100 is in a wirelessly disconnected area on the map. If it is assumed, it is possible to prevent false reports by determining that there is no abnormality even if the position information cannot be acquired.
- step S103 the control unit 201 constantly monitors (in this case, every 30 minutes) a setting action program and position information of a user such as a cash transport vehicle, a bus, and a taxi.
- step S104 the control unit 201 determines whether or not a predetermined time (for example, 30 minutes or more) has elapsed between the setting behavior program of a user such as a cash transport vehicle, a bus, and a taxi and the positional information by GPS.
- a predetermined time for example, 30 minutes or more
- step S105 the control unit 201 determines whether or not an abnormal state occurrence notification has been received from a user (communication terminal device 100) such as a cash transport vehicle, a bus, or a taxi. Note that the determination of an abnormal situation has been described with reference to FIG.
- step S106 the control unit 201 transmits an alarm by mail or voice to the communication terminal device 100 of the corresponding user via the alarm transmission unit 203 (FIG. 1), and the corresponding user. Send emails to your family, corporate headquarters, etc. If the abnormal event occurrence notification is not received, the process returns to step S102. In step S ⁇ b> 107, the control unit 201 determines whether there is a response from the communication terminal device 100 of the corresponding user.
- step S102 If there is a response from the user's communication terminal device 100, the process returns to step S102.
- the control unit 201 continues monitoring position information by GPS of the communication terminal device 100 of the user in step S108.
- the control unit 201 determines whether or not a predetermined time (for example, 30 minutes or more) has elapsed between the behavioral mismatch between the set behavior program and the position information.
- step S110 the control unit 201 confirms the emergency situation from the headquarters / security company, confirms the position of the user, reports 110 to the police, and ends the flow.
- the reporting destination in the same police administrative district as the victim may be preferentially notified as in the first embodiment.
- a threatening person attacks a cash transport vehicle, a bus, a taxi, etc.
- the employee is detained, and no action or rescue is requested.
- the employee can reliably report the occurrence of the abnormal situation together with the current position information.
- the headquarters contacted the employee by telephone to confirm that there was no abnormality
- the employee confirmed that the behavior of cash transport vehicles, buses, taxis, etc. was confirmed by GPS and determined. If you do not act on the course, you can report the 110th to the police and prevent incidents.
- a video or photo of a surveillance camera installed in a cash transport vehicle, bus, taxi or the like is sent by email to a person related to the corporate headquarters, and an abnormal state of the cash transport vehicle, bus, taxi or the like is transmitted.
- the person in charge at the corporate headquarters can confirm the situation in the car and, if it is an emergency, can call the police number 110, and then follow the cash transport car, bus, taxi, etc. with GPS and mobile terminals. is there.
- the third embodiment of the present invention is an example of another respiratory stop pattern.
- the hardware configuration of the digital smart security system according to the present embodiment is the same as that shown in FIG.
- the storage unit 104 of FIG. 1 stores the respiratory stop pattern shown in FIG.
- FIG. 13 is a diagram illustrating an example of a breathing stop pattern of the digital smart security system according to the present embodiment.
- the respiratory stop pattern of the present embodiment has, for each user, normal breathing, abnormal state, consciously breathing stop seconds (second setting by an individual), respiratory stop pattern, and emergency state. .
- user A has an “i attention state” in about 5 seconds within 30 seconds, an “ii abnormal state” in 10 seconds, and an “iii emergency state” pattern in 15 seconds.
- the above “i”, “ii”, and “iii” are stopped once or repeatedly 2-3 times, and a breathing stop pattern is created at intervals depending on the situation in the field.
- the present embodiment by storing the breathing stop pattern for each user in advance, when an abnormal situation occurs, the user stops and resumes breathing for a certain period of time. It is possible to automatically recognize the occurrence of an abnormal state without performing the above.
- the above description is an illustration of a preferred embodiment of the present invention, and the scope of the present invention is not limited to this.
- the telephone line 210 is used as the public line.
- the present invention is not limited to this case.
- a wireless communication line, the Internet, or a LAN is used as the public line. May be.
- a transceiver may be used as a communication terminal device when the public line is wireless communication
- a personal computer or palmtop computer may be used as a communication terminal device when the public line is the Internet or a LAN. Good.
- the name “digital smart security system and method” is used. However, this is for convenience of explanation, and may be digital smart security, a security system, a security method, or the like. Furthermore, the detection of abnormal situations includes everything known. For example, in an abnormal situation, there is a suspicious person intrusion or approach. Further, the report is not limited to e-mail and may be anything.
- the digital smart security system and method of the present invention can also be realized by a program for causing a computer to function as the digital smart security system or method.
- This program may be stored in a computer-readable recording medium.
- the recording medium on which this program is recorded may be the ROM itself of this digital smart security system, or a program reading device such as a CD-ROM drive is provided as an external storage device, and the recording medium is inserted therein.
- a CD-ROM or the like that can be read may be used.
- the recording medium may be a magnetic tape, a cassette tape, a flexible disk, a hard disk, an MO / MD / DVD, or a semiconductor memory.
- the digital smart security system and method according to the present invention can be used in real time in corporations / commercial facilities, offices, etc., and prevent the loss of property, life and economy, and has a great effect on use.
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Description
(第1の実施の形態)
図1は、本発明の第1の実施の形態に係るデジタルスマート・セキュリティシステムの構成を示すブロック図である。
Digital Assistants)又はスマートフォン等で構成され、電話回線210を介して監視装置200に音声送信及び撃退装置稼働指令を送信する。本実施の形態では、通信端末装置100は、携帯電話、スマートフォンの利用を想定しており、各個人が様々な場所(すなわち現在位置)で使用可能である。通信端末装置100のうちの一つは、警備会社220にPC(Personal Computer)とともに配置される。通信端末装置100は、電話回線210を介して監視装置200からのメール又は動画を含む映像等を受信可能である。
呼吸センサ10は、呼吸による体表の動きをとらえる。呼吸センサ10は、本発明の対象ではないが、本発明を理解するために説明する。呼吸センサ10は、例えばマイクロ波ドップラーセンサを用いセンサから発信されるマイクロ波(2.4GHz)により微少体動に基づく呼吸(呼吸数の大小、有無)を検知する。呼吸センサ10は、他の例として音響トランスデュサ内蔵の粘着式センサを用い、気道の空気の流れ(呼気・吸気)を識別し、連続的に呼吸数を検出する。呼吸センサ10により得られた呼吸情報は、無線通信方式により本発明の対象である通信端末装置100に出力される。
通信端末装置100は、呼吸センサ10からの呼吸情報を取得する呼吸情報取得部101と、GPS(Global Positioning System)機能部102と、通信部103と、記憶部104と、装置全体を制御する制御部110と、を含んで構成される。
監視装置200は、制御部201、入力部202、及び警報発信部203を備える。監視装置200は、一般的なサーバ計算機、パーソナルコンピュータ等であってよい。
図2に示すように、通信端末装置100の記憶部104には、呼吸停止パターンプログラム実行時に参照される登録設定情報120が格納されている。登録設定情報120は、本システム利用者ごとに、該当呼吸センサ10と通信端末装置100の呼吸情報が対応付けられて設定される。この登録設定情報120は、予め監視装置200に転送されて監視装置200に登録され、監視装置200においても、本システム利用者ごとの通信端末装置100の呼吸情報が参照可能である。
まず、呼吸センサ10、通信端末装置100及び監視装置200の登録処理について説明する。
図4は、監視装置200(図1)の登録処理を示すフローチャートである。本フローは、主に監視装置200の制御部201により実行される。
次に、デジタルスマート・セキュリティシステムの通信端末装置100の監視制御について説明する。
ステップS24では、制御部110は、呼吸停止パターンプログラムを起動し、呼吸情報を基に、利用者の呼吸の異常を判定する。呼吸異常判定の詳細については、図6により後述する。
図6は、通信端末装置100の異常判定部112の呼吸異常判定処理を示すフローチャートであり、図5のステップS24のサブルーチンである。
<通報例1>
図7は、デジタルスマート・セキュリティシステムの監視装置200の通報制御動作を示すフローチャートである。本フローは、主に監視装置200の制御部201(図1)により実行される。
ステップS43では、制御部201は、警備対象建物が存在する管轄域である該当都道府県に存在すると判定した通信端末装置100に対して優先的に警察230(図1参照)への通報指示のメールを送信する。
このように、本通報例1は、利用者(被害者)と同一の警察行政区にいる通報先に優先的に通報するようにしている。
店舗、銀行、企業事務所、駅・エアーターミナル、両替商、現金輸送車、バス、タクシー等の接客営業の建物及び個人の自宅(以下、店舗等という)への適用例である。
ステップS54では、入力部202による目視確認の結果入力を待つ。
目視確認の結果、異常が確認された場合は、ステップS43で制御部201は、警備対象建物が存在する管轄域である該当都道府県に存在すると判定した通信端末装置100に対して優先的に警察230への通報指示のメールを送信する。
通報例1及び2によれば、強盗に知られずに異常事態を通報することができる。
通報例3は、強盗に知られずに異常事態を通報した後、強盗を威嚇する例である。
目視確認の結果、異常ありの場合は、ステップS67で制御部201は、店舗等の本部に対し店舗の該当場所(該当利用者のいる店舗場所)への音声通報を要求する。店舗等の本部は、この要求を受けて店舗の該当場所に音声通知(威嚇音、警告メッセージなど)により威嚇する。
ステップS44では、監視装置200の制御部201は、関係先、他の通信端末装置100及び警備会社140に対して、警察150へ通報した結果メールを送信して本フローを終了する。
通報例4は、通報例3と同様に、強盗に知られずに異常事態を通報した後、強盗を威嚇する例である。
通信端末装置100からの異常判定情報を受信した場合、ステップS81で制御部201は、受信した通信端末装置100の位置情報に基づいて、関係先である家族、警備会社、法人本部等に対しメールにより異常を通知するとともに、該当利用者の通信端末装置100に対し自動音声により状況確認の発声をさせる。
上記メールを発行しても所定時間(例えば3分)以内に応答がない場合、ステップS83で制御部201は、他の利用者(他の通信端末装置100)に、メールにより当該利用者に異常が発生した可能性がある旨のメッセージを通知する。
ステップS84では、制御部201は、監視カメラによる建物周辺の撮影を要求する。店舗事務所、本部、警備会社等は、監視装置200の利用者撮影要求に基づいて、監視カメラにより建物周辺の動画を撮影し、監視装置200に送信する。
目視確認の結果、異常ありの場合は、ステップS67で制御部201は、店舗等の本部に対し店舗の該当場所(該当利用者のいる店舗場所)への音声通報を要求する。店舗等の本部は、この要求を受けて店舗の該当場所に音声通知(威嚇音、警告メッセージなど)により威嚇する。
ステップS44では、監視装置200の制御部201は、関係先、他の通信端末装置100及び警備会社220に対して、警察230へ通報した結果メールを送信して本フローを終了する。
ステップS70では、制御部201は、店舗等の本部からの応答を基に、該当利用者が指示通りの行動を行ったか否かを判別する。該当利用者が指示通りの行動を行った場合、異常がないと判断してステップS71に進み、該当利用者が指示通りの行動を行わなかった場合、異常があると判断してステップS68に進む。
このように、従業員は脅迫者に脅迫されて、一切行動できない状況でも、監視装置200は脅迫者に気付かれず、店舗の事務所と本部、警備会社220へ異常事態を通報して、警察230へリアルタイムに110番通報(すなわち、緊急電話)することができる。
本発明の第2の実施の形態は、利用者、現金輸送車、バス、タクシー等への適用例である。
本発明の第2の実施の形態に係るデジタルスマート・セキュリティシステムのハード的構成は、図1と同様であるため説明を省略する。
ステップS91では、制御部201は、現金輸送車、バス、又はタクシー等の利用者の行動情報を、監視装置登録設定情報(図示略)として予め登録する。監視装置登録設定情報は、通信端末装置100に関連付けられた呼吸センサ10の利用者の情報、通信端末装置の携帯番号、氏名、パスワード、連絡先、通常の呼吸数(通常時呼吸情報)等を登録する。また、呼吸停止パターンプログラムを登録する。
まず、ステップS101で制御部201は、利用者が現金輸送車、バス、又はタクシー等の利用者である場合、通信端末装置100のモード設定を行動監視モードに設定する。また、通信端末装置100のモード設定についても同様に行動監視モードに設定する。この場合、通信端末装置100が先に行動監視モードに設定し、行動監視モード設定を監視装置200に通知し、監視装置200が行動監視モードを設定する態様でもよい。
ステップS104では、制御部201は、現金輸送車、バス、タクシー等の利用者の設定行動プログラムとGPSによる位置情報の不一致が所定時間(例えば30分以上)経過したか否かを判別する。
ステップS105では、制御部201は、現金輸送車、バス、又はタクシー等の利用者(通信端末装置100)からの異常事態発生通知を受信したか否かを判別する。なお、異常事態の判定については、図5により説明した。
ステップS107では、制御部201は、該当利用者の通信端末装置100からの応答があるか否かを判別する。
ステップS109では、制御部201は、設定行動プログラムと位置情報の行動不一致が所定時間(例えば30分以上)経過したか否かを判別する。
ステップS110では、制御部201は、本部・警備会社より、緊急事態確認し、利用者の位置を確認するとともに、警察に110番通報して本フローを終了する。
このように、本実施の形態によれば、現金輸送車、バス、タクシー等を脅迫者(強盗)が襲い、従業員を脅迫して従業員は拘束されて、何も行動・救助を求めることができなくても、従業員は、現在位置情報と共に、確実に異常事態の発生を通報することができる。また、本部より従業員へ電話で異常はないか連絡して、従業員より無事だと連絡があっても、現金輸送車、バス、タクシー等の行動が、GPSにより確認して、定められたコースを行動しなければ警察へ110番通報することができ、事件を未然に防止することができる。さらに、現金輸送車、バス、タクシー等の車内に設置されている監視カメラの動画又は写真を、法人本部関係者へメールで送信し、現金輸送車、バス、タクシー等の異常状態を発信する。受信した法人本部関係者は、車内の状況を確認し緊急事態であれば、警察へ110番して、その後はGPS、携帯端末で現金輸送車、バス、タクシー等を追跡対応することが可能である。
上記各実施の形態では、異常事態が発生した場合には一定期間だけ呼吸を停止して再開するように予め指示し、要員が呼吸を一定期間(例えば10~15秒間)停止して再開したと判断された場合、異常事態が発生していると判断して通報する例について説明した。
本実施の形態に係るデジタルスマート・セキュリティシステムのハード的構成は、図1と同様であるため説明を省略する。本実施の形態では、図1の記憶部104は、図13に示す呼吸停止パターンを記憶する。
図13に示すように、本実施の形態の呼吸停止パターンは、利用者ごとに、通常呼吸、異常状態、意識的に呼吸停止秒間(個人により秒間設定)、呼吸停止パターン、及び緊急状態を有する。
さらに、異常事態の検出には、公知のすべてが含まれる。例えば異常事態には、不審者侵入又は接近がある。また、通報は、メールに限らずどのようなものでもよい。
このプログラムを記録した記録媒体は、本デジタルスマート・セキュリティシステムのROMそのものであってもよいし、また、外部記憶装置としてCD-ROMドライブ等のプログラム読取装置が設けられ、そこに記録媒体を挿入することで読み取り可能なCD-ROM等であってもよい。
100 通信端末装置
101 呼吸情報取得部
102 GPS機能部
103 通信部
104 記憶部
110,201 制御部
111 登録部
112 異常判定部
200 監視装置
201 制御部
202 入力部
203 警報発信部
210 電話回線
220 警備会社
Claims (7)
- 装着される要員の呼吸を検出する呼吸センサから呼吸情報を取得する呼吸情報取得手段と、
前記呼吸情報によって、呼吸が所定期間停止して再開するか否かにより異常の有無を判定する異常判定手段と、
前記異常判定手段が異常事態有りと判定したことに応じて異常事態を通報する制御手段と
を備えることを特徴とするデジタルスマート・セキュリティシステム。 - 前記異常判定手段は、前記呼吸情報によって、呼吸が所定期間停止して再開する場合には、警備上の異常が有りと判定し、前記呼吸が停止して再開しない場合には、要員の健康上の異常が有りと判定し、前記制御手段は、前記警備上の異常と健康上の異常とによって異なる通報をすることを特徴とする請求項1記載のデジタルスマート・セキュリティシステム。
- 前記異常判定手段は、前記呼吸情報によって、呼吸が複数の所定期間のいずれの期間停止して再開するかに応じて異なる異常が有ると判定し、前記制御手段は、前記異なる異常に応じて異なる通報をすることを特徴とする請求項1又は2記載のデジタルスマート・セキュリティシステム。
- 複数の通信端末装置の存在位置を検出し、前記通信端末装置の位置情報を取得する位置情報取得手段と、
警備対象建物が存在する、緊急通報用電話を受信する管轄域を保持する管轄域保持手段と
を備え、
前記制御手段は、前記異常判定手段が異常事態有りと判定したことに応じて、前記管轄域保持手段を参照して、複数の前記通信端末装置のいずれかが前記管轄域に存在する場合に、該管轄域に存在する前記通信端末装置に優先的に通報することを特徴とする請求項1又は2記載のデジタルスマート・セキュリティシステム。 - 前記通報する手段がメール送信及び映像送信であることを特徴とする請求項1又は2記載のデジタルスマート・セキュリティシステム。
- 装着される要員の呼吸を検出する呼吸センサから呼吸情報を取得する呼吸情報取得ステップと、
前記呼吸情報によって、呼吸が所定期間停止して再開するか否かにより異常の有無を判定する異常判定ステップと、
前記異常判定ステップが異常事態有りと判定したことに応じて異常事態を通報する制御ステップと
を備えることを特徴とするデジタルスマート・セキュリティ方法。 - コンピュータを、
装着される要員の呼吸を検出する呼吸センサから呼吸情報を取得する呼吸情報取得手段と、前記呼吸情報によって、呼吸が所定期間停止して再開するか否かにより異常の有無を判定する異常判定手段と、前記異常判定手段が異常事態有りと判定したことに応じて異常事態を通報する制御手段とを備えるデジタルスマート・セキュリティシステム
として機能させるためのプログラム。
Priority Applications (5)
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| HK15105087.6A HK1204706B (en) | 2012-07-05 | 2012-10-22 | Digital smart security system and method |
| US14/412,952 US9942414B2 (en) | 2012-07-05 | 2012-10-22 | Digital smart security network system, method and program |
| JP2012555630A JP5278981B1 (ja) | 2012-07-05 | 2012-10-22 | デジタルスマート・セキュリティシステム、方法及びプログラム |
| EP12880567.8A EP2871621B1 (en) | 2012-07-05 | 2012-10-22 | Digital smart security system and method, and program |
| CN201280074509.XA CN104541312B (zh) | 2012-07-05 | 2012-10-22 | 数字智能安防网络系统和方法 |
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| PCT/JP2012/067242 WO2014006733A1 (ja) | 2012-07-05 | 2012-07-05 | デジタルセキュリティー・ネットワークシステム及び方法 |
| JPPCT/JP2012/067242 | 2012-07-05 |
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|---|---|
| WO2014006772A1 true WO2014006772A1 (ja) | 2014-01-09 |
Family
ID=47692846
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| PCT/JP2012/077265 Ceased WO2014006772A1 (ja) | 2012-07-05 | 2012-10-22 | デジタルスマート・セキュリティシステム、方法及びプログラム |
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| PCT/JP2012/067242 Ceased WO2014006733A1 (ja) | 2012-07-05 | 2012-07-05 | デジタルセキュリティー・ネットワークシステム及び方法 |
Country Status (5)
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|---|---|
| US (2) | US9578181B2 (ja) |
| EP (2) | EP2871624B1 (ja) |
| JP (1) | JP5120906B1 (ja) |
| CN (2) | CN104488007B (ja) |
| WO (2) | WO2014006733A1 (ja) |
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Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP2018187365A (ja) * | 2017-05-01 | 2018-11-29 | 株式会社日立製作所 | 車両用呼吸監視システム、車両用呼吸監視方法及び車両用呼吸監視装置 |
| WO2020066726A1 (ja) * | 2018-09-28 | 2020-04-02 | グローリー株式会社 | 貨幣処理システムおよび貨幣処理装置 |
Also Published As
| Publication number | Publication date |
|---|---|
| JP5120906B1 (ja) | 2013-01-16 |
| US20150179039A1 (en) | 2015-06-25 |
| HK1204706A1 (en) | 2015-11-27 |
| JPWO2014006733A1 (ja) | 2016-06-02 |
| EP2871624A4 (en) | 2015-07-22 |
| EP2871624A1 (en) | 2015-05-13 |
| CN104541312A (zh) | 2015-04-22 |
| EP2871621B1 (en) | 2018-10-03 |
| CN104488007A (zh) | 2015-04-01 |
| EP2871624B1 (en) | 2017-03-01 |
| EP2871621A4 (en) | 2015-08-19 |
| CN104488007B (zh) | 2017-10-31 |
| US9942414B2 (en) | 2018-04-10 |
| US9578181B2 (en) | 2017-02-21 |
| US20150229773A1 (en) | 2015-08-13 |
| WO2014006733A1 (ja) | 2014-01-09 |
| HK1204130A1 (en) | 2015-11-06 |
| EP2871621A1 (en) | 2015-05-13 |
| CN104541312B (zh) | 2017-09-01 |
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