WO2023276322A1 - Système de gestion des entrées/sorties - Google Patents

Système de gestion des entrées/sorties Download PDF

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Publication number
WO2023276322A1
WO2023276322A1 PCT/JP2022/012217 JP2022012217W WO2023276322A1 WO 2023276322 A1 WO2023276322 A1 WO 2023276322A1 JP 2022012217 W JP2022012217 W JP 2022012217W WO 2023276322 A1 WO2023276322 A1 WO 2023276322A1
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WIPO (PCT)
Prior art keywords
information
exit
authentication
biometric authentication
mode
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Application number
PCT/JP2022/012217
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English (en)
Japanese (ja)
Inventor
智和 佃
堅吾 明石
知弘 吉田
重之 堤
崇亮 小林
Original Assignee
日本金銭機械株式会社
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Application filed by 日本金銭機械株式会社 filed Critical 日本金銭機械株式会社
Publication of WO2023276322A1 publication Critical patent/WO2023276322A1/fr

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    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07CTIME OR ATTENDANCE REGISTERS; REGISTERING OR INDICATING THE WORKING OF MACHINES; GENERATING RANDOM NUMBERS; VOTING OR LOTTERY APPARATUS; ARRANGEMENTS, SYSTEMS OR APPARATUS FOR CHECKING NOT PROVIDED FOR ELSEWHERE
    • G07C9/00Individual registration on entry or exit
    • G07C9/30Individual registration on entry or exit not involving the use of a pass
    • G07C9/32Individual registration on entry or exit not involving the use of a pass in combination with an identity check
    • G07C9/37Individual registration on entry or exit not involving the use of a pass in combination with an identity check using biometric data, e.g. fingerprints, iris scans or voice recognition

Definitions

  • the present invention relates to an entrance/exit management system that manages entrance/exit to buildings and rooms.
  • the entry time is automatically recorded. Despite this, there is a risk that the entry time will be recorded just by passing by the camera. Also, if the user goes outside for a break or temporary errands, it is assumed that the entry time will be recorded again or the entry time will be overwritten.
  • An object of the present invention is to reduce the risk of unintentional entry and exit times being recorded by visitors and exiters.
  • An entrance/exit management system includes a biometric authentication device and switching signal transmission means.
  • the biometric authentication device has biometric authentication means and mode switching means.
  • the biometric authentication means is, for example, face authentication means using an imaging device (camera), iris authentication means, fingerprint authentication means, and the like.
  • the mode switching means can switch the biometric authentication device between a clocking mode for recording at least one of entry and exit upon completion of authentication by the biometric authentication means, and an authentication mode for allowing the biometric authentication means to perform only authentication.
  • the switching signal transmitting means transmits a switching signal to the biometrics authentication device for causing the mode switching means to switch modes. Then, when the switching signal is sent from the switching signal transmitting means, the biometric authentication device switches from the authentication mode to the stamping mode.
  • a switching signal is sent from the switching signal transmission means to the biometrics authentication device, and the biometrics authentication device switches to the clocking mode to authenticate the entering or exiting person. can be recorded. Therefore, in this entrance/exit management system, it is possible to reduce the possibility that the unintentional entry time or exit time of the person entering or leaving the venue will be recorded.
  • the entrance/exit management system according to the second aspect of the present invention is the entrance/exit management system according to the first aspect, further comprising alarm notification means.
  • the alarm notifying means notifies an alarm when the biometric authentication device performs authentication in the authentication mode while at least one of entry and exit is not recorded.
  • this entry/exit management system can reduce forgetting to record entry or exit.
  • An entrance/exit management system is the entrance/exit management system according to the first aspect, further comprising an information registration unit and alarm notification means.
  • the information registration unit can register date/time information and interview information in association with the biometric authentication information.
  • the alarm notifying means notifies an alarm when the actual date and time is a date and time at which medical inquiry information is not registered in the information registration unit.
  • this entrance/exit management system can promote the provision of interview information to those entering or exiting.
  • An entrance/exit management system is the entrance/exit management system according to the second or third aspect, further comprising a gate device.
  • the gate device has an opening/closing door. The alarm keeps the open/close door of the gate device in a closed state.
  • this entry/exit management system can reduce forgetting to record entry or exit, and promote the provision of medical information to those entering or exiting.
  • An entrance/exit management system is an entrance/exit management system according to any one of the first to fourth aspects, and has a plurality of pairs of biometric authentication devices and switching signal transmission means.
  • a biometric authentication device and switching signal transmission means for entry and a biometric authentication device and switching signal transmission means for exit can be installed separately.
  • An entrance/exit management system is the entrance/exit management system according to any one of the first to fifth aspects, wherein the biometric authentication device switches between an authentication mode and a stamping mode according to a switching signal. alternately with
  • FIG. 1 is an image diagram showing the overall configuration of an entrance/exit management system according to an embodiment of the present invention
  • FIG. 1 is an image diagram showing a biometric authentication device, a non-contact sensor, and a gate device according to an embodiment of the present invention
  • FIG. It is a block diagram which shows the structure of the management apparatus which concerns on embodiment of this invention.
  • 1 is a block diagram showing the configuration of a biometric authentication device according to an embodiment of the present invention
  • FIG. 1 is a block diagram showing the configuration of a gate device according to an embodiment of the present invention
  • FIG. 1 is a block diagram showing the configuration of a medical questionnaire input device according to an embodiment of the present invention
  • FIG. FIG. 4 is an image diagram showing a medical interview result table according to the embodiment of the present invention
  • FIG. 4 is an image diagram showing a matching table according to the embodiment of the present invention
  • FIG. 5 is an image diagram showing a face authentication result table according to the embodiment of the present invention
  • FIG. 4 is an image diagram showing medical inquiry information according to the embodiment of the present invention
  • It is a flowchart which shows the flow of a process in the management apparatus of the entry/exit management system which concerns on embodiment of this invention.
  • 4 is a flow chart showing the flow of processing in the biometric authentication device of the entrance/exit management system according to the embodiment of the present invention
  • 4 is a flow chart showing the flow of processing in the biometric authentication device of the entrance/exit management system according to the embodiment of the present invention
  • It is a flow chart which shows the flow of processing in the gate device of the entrance/exit management system according to the embodiment of the present invention.
  • 1 is a block diagram showing the functional configuration of an entry/exit management system according to an embodiment of the present invention
  • FIG. 10 is a flow chart showing the flow of processing in the biometric authentication device of the entrance/exit management system according to Modification (E).
  • the entry/exit management system 1 according to the embodiment of the present invention is used to manage entry/exit of people in a building, room, or the like.
  • the entrance/exit management system 1 according to the embodiment of the present invention mainly includes a management device 100, a biometric authentication device 200, a non-contact sensor 300, a gate device 400 and a medical questionnaire. It is composed of an input device 500 and the like.
  • a communication network 50 may be composed of any communication network (for example, the Internet, a carrier network, etc.), regardless of whether it is wired or wireless.
  • the management device 100 is for, for example, receiving medical interview information 521 from the medical questionnaire input device 500 via the communication network 50 .
  • the management device 100 mainly includes a CPU (Central Processing Unit) 110, a memory 120, a display 130, an operation unit 140, a communication interface 150, and the like, as shown in FIG. These constituent elements are described in detail below.
  • CPU Central Processing Unit
  • the CPU 110 executes a program stored in the memory 120 to control each unit of the management device 100, acquire necessary data from the memory 120, and perform arithmetic processing (for example, arithmetic processing, logic processing, etc.). ).
  • arithmetic processing for example, arithmetic processing, logic processing, etc.
  • the CPU 110 executes a program stored in the memory 120 and refers to various data to perform various processes to be described later.
  • the memory 120 is various types of RAM (Random Access Memory), various types of ROM (Read Only Memory), etc., and may be included in the management apparatus 100, or may be stored in various types of the management apparatus 100. It may be removable from the interface, or it may be a storage medium of another device (for example, a data management server (not shown), etc.) accessible from the management device 100 .
  • the memory 120 stores programs executed by the CPU 110 , data generated by the execution of the programs by the CPU 110 , data input via the operation unit 140 , biometric authentication device 200 , non-contact sensor 300 , It stores data received from the gate device 400, the medical questionnaire input device 500, etc., the medical examination result table 121, and other data used for the services according to the embodiment of the present invention.
  • identification information for example, ID, name, etc.
  • the extracted feature amount information, medical inquiry information 521 (see FIG. 10), medical inquiry result information, medical inquiry information registration date and time information, and the like are associated with each other.
  • the interview result information indicates the health condition (eg, good, somewhat good, somewhat unwell, unwell, etc.) of the person who wishes to enter/exit determined mechanically or artificially from the check item information (see FIG. 10) of the interview information 521.
  • Information is, for example, date and time information included in the medical inquiry information 521 or information indicating the date and time when the medical inquiry information 521 was received from the medical inquiry form input device 500 via the communication network 50 .
  • the display 130 displays text, images, videos, etc. based on signals from the CPU 110 .
  • the display 130 displays interview information 521 (see FIG. 10), interview result table 121 (see FIG. 7), matching table 221 (see FIG. 8), face authentication result table 222 (see FIG. 9), and the like.
  • the display 130 may have a touch panel function.
  • the operation unit 140 is a mouse, a keyboard, buttons, a touch panel, etc., and inputs various commands from the administrator of the management device 100 to the CPU 110 .
  • Communication Interface Communication interface 150 transmits data from CPU 110 to other devices such as biometric device 200 , non-contact sensor 300 , gate device 400 , and medical questionnaire input device 500 via communication network 50 . Conversely, communication interface 150 receives data from other devices such as biometric device 200 , non-contact sensor 300 , gate device 400 , and medical questionnaire input device 500 via communication network 50 and transfers the data to CPU 110 .
  • the biometrics authentication device 200 is for, for example, performing face authentication of a person who wishes to enter/exit at the time of entrance/exit.
  • the biometrics authentication device 200 can switch between "a clocking mode in which at least one of entry and exit is recorded upon completion of face authentication of a person wishing to enter/exit" and "an authentication mode in which only face authentication of a person wishing to enter/exit is performed". can be done.
  • the embossing mode is, in detail, "entrance embossing mode that records entry when face authentication of a person wishing to enter or leave is completed" and "exit embossing mode that records exit when face authentication of a person wishing to enter or leave is completed” can be divided into
  • the biometric authentication device 200 normally maintains the authentication mode, and switching from the authentication mode to the embossing mode is performed based on a switching signal transmitted from the non-contact sensor 300 via the communication network 50 .
  • the authentication mode is switched to the entrance stamping mode, and the gate device 400
  • the authentication mode is switched to the exit stamping mode.
  • the biometric authentication device 200 is arranged on the entrance gate En side and the exit gate Ex side of the gate device 400, respectively.
  • a non-contact sensor 300 is arranged near the front side of the biometric authentication device 200 .
  • the biometric authentication device 200 is realized by a personal computer, a tablet terminal, a smart phone, or the like. As shown in FIGS. 2 and 4, the biometric authentication device 200 mainly includes a CPU 210, a memory 220, a display 230, an operation section 240, a communication interface 250, an imaging section 260, and the like. These constituent elements are described in detail below.
  • the CPU 210 executes a program stored in the memory 220 to control each part of the biometric authentication device 200, obtain necessary data from the memory 220, and perform arithmetic processing (for example, arithmetic processing and logic processing). etc.).
  • the CPU 210 executes a program stored in the memory 220 and refers to various data to perform various processes described later.
  • the memory 220 is various RAMs, various ROMs, and the like.
  • the memory 220 stores programs executed by the CPU 210 , data generated by the execution of the programs by the CPU 210 , data input via the operation unit 240 , management device 100 via the communication network 50 , non-contact sensors 300 , and gates. It stores the data received from the device 400, the medical questionnaire input device 500, etc., the matching table 221, the face recognition result table 222, and other data used for the services according to the embodiment of the present invention.
  • identification information eg, ID, name, etc.
  • a predetermined person eg, a person (employee, etc.) who enters and leaves a building or room on a regular basis
  • feature amount information extracted from the face image of this person.
  • the CPU 210 extracts feature amount information from this face image and collates this feature amount information with the matching table 221 . Thereby, the CPU 210 can determine whether or not the person who wishes to enter/exit is a person registered in the matching table 221 .
  • the matching table 221 may associate a plurality of patterns of feature quantity information with the matching table 221 .
  • feature amount information extracted from a predetermined person's face image when not wearing a mask is associated with the matching table 221 as one pattern
  • feature amount information extracted from a predetermined person's face image when wearing a mask is used as one pattern.
  • the matching table 221 may be transmitted to the management device 100 via the communication network 50 and stored in the memory 120 of the management device 100 as well.
  • the face authentication result table 222 shows the face authentication results obtained by matching the feature amount information of the person who wishes to enter/exit with the matching table 221 .
  • the feature amount information extracted from the face image of the person who wishes to enter and leave the identification information of the person corresponding to this feature amount information (for example, ID, name, etc.), Authentication record information (for example, authentication success/failure information such as the symbol ⁇ indicating that face authentication was successful or the symbol X indicating that face authentication was unsuccessful, and the date and time when face authentication was performed (succeeded or failed) information, information indicating that entry or exit is being recorded), etc.
  • the CPU 210 of the biometric authentication device 200 When the CPU 210 of the biometric authentication device 200 receives a switching signal from the non-contact sensor 300 and switches to the clocking mode (see FIG. 12), the CPU 210 flags the date and time information when the face authentication is successful. The obtained date/time information is reflected in the face authentication result table 222 as entrance date/time information or exit date/time information. Referring to FIG. 9, for the person who wishes to enter and leave the feature amount information (x1, y1, . It can be seen that the symbol ⁇ is shown in the authentication success/failure information (successful authentication, that is, the person is registered in the matching table 221).
  • the display 230 displays text, images, videos, etc. based on signals from the CPU 210 .
  • the display 230 displays the matching table 221, the face authentication result table 222, the face image of the person who wishes to enter/exit acquired by the photographing unit 260, and the like.
  • the display 230 may have a touch panel function.
  • the operation unit 240 is a mouse, a keyboard, buttons, a touch panel, etc., and inputs various commands to the CPU 210 from a person who wishes to enter/exit, an administrator of the biometric authentication device 200, or the like.
  • the person who wishes to enter/exit or the administrator of the biometric authentication device 200 can obtain the adjustment information of the photographing unit 260 via the operation unit 240 when the photographing unit 260 does not successfully acquire the face image of the person who wishes to enter/exit. (For example, brightness information, magnification information, scene information, etc.) are input.
  • Communication Interface Communication interface 250 transmits data from CPU 210 to other devices such as management device 100 , non-contact sensor 300 , gate device 400 and medical questionnaire input device 500 via communication network 50 . Conversely, the communication interface 250 receives data from other devices such as the management device 100 , the non-contact sensor 300 , the gate device 400 and the medical questionnaire input device 500 via the communication network 50 and transfers the data to the CPU 210 .
  • the photographing unit 280 acquires a face image of a person who wishes to enter or leave the hall based on a signal from the CPU 210 .
  • the photographing unit 280 is composed of, for example, a camera.
  • the non-contact sensor 300 is for generating a switching signal for switching the biometric authentication device 200 from the authentication mode to the embossing mode.
  • various types of sensors eg, infrared sensors, magnetic sensors, optical sensors, etc.
  • the non-contact sensors 300 are arranged on the entrance gate En side and the exit gate Ex side of the gate device 400, respectively, as shown in FIG.
  • the non-contact sensor 300 is arranged near the front side of the biometric authentication device 200 as described above.
  • the non-contact sensor 300 detects that a person who wishes to enter/exit is held up, it generates a switching signal and transmits the switching signal to the management device 100 and the biometric authentication device 200 via the communication network 50 .
  • the gate device 400 is for restricting entry and exit of a person who wishes to enter and exit, for example, until a certain condition is satisfied.
  • the gate device 400 is divided into an entrance gate En and an exit gate Ex, as shown in FIG.
  • the gate device 400 mainly includes a CPU 410, a memory 420, an operation section 440, a communication interface 450, an opening/closing door 460, and the like. These constituent elements are described in detail below.
  • the CPU 410 executes a program stored in the memory 420 to control each part of the gate device 400, acquire necessary data from the memory 420, and perform arithmetic processing (for example, arithmetic processing, logic processing, etc.). ).
  • the CPU 410 executes a program stored in the memory 420 and refers to various data to execute various processes to be described later.
  • the memory 420 is various RAMs, various ROMs, and the like.
  • the memory 420 stores programs executed by the CPU 410, data generated by the execution of the programs by the CPU 410, data input via the operation unit 440, the management device 100, the biometric authentication device 200, non It stores data received from the contact sensor 300, the medical questionnaire input device 500, and other data used for services according to the embodiment of the present invention.
  • the operation unit 440 inputs various commands from the administrator of the gate device 400 to the CPU 410 .
  • the communication interface 450 transmits data from the CPU 410 to other devices such as the management device 100, the biometric authentication device 200, the non-contact sensor 300, and the medical questionnaire input device 500 via the communication network 50. Conversely, communication interface 450 receives data from other devices such as management device 100 , biometric authentication device 200 , non-contact sensor 300 , and medical questionnaire input device 500 via communication network 50 and passes the data to CPU 410 .
  • Opening/Closing Door The opening/closing door 460 is normally kept closed to restrict entry and exit of those who wish to enter/exit (see FIG. 2). However, when a certain condition is satisfied, the CPU 410 of the gate device 400 receives the door open command information from the management device 100 or the biometric authentication device 200 via the communication network 50, and opens the door 460 according to the door open command information. to
  • a medical questionnaire input device 500 is used by a person who wishes to enter and leave the hall, and is for generating medical information 521, for example.
  • the medical questionnaire input device 500 is realized by a personal computer, a tablet terminal, a smart phone, or the like.
  • the medical questionnaire input device 500 is mainly composed of a CPU 510, a memory 520, a display 530, an operation section 540, a communication interface 550, and the like, as shown in FIG. These constituent elements are described in detail below.
  • the CPU 510 executes a program stored in the memory 520 to control each part of the medical questionnaire input device 500, acquire necessary data from the memory 520, and perform arithmetic processing (for example, arithmetic operation processing and logical operation). processing, etc.).
  • arithmetic processing for example, arithmetic operation processing and logical operation. processing, etc.
  • the CPU 510 executes a program stored in the memory 520 and refers to various data to execute various processes to be described later.
  • the memory 520 is various RAMs, various ROMs, and the like.
  • the memory 520 stores programs executed by the CPU 510 , data generated by the execution of the programs by the CPU 510 , data input via the operation unit 540 , data received via the communication network 50 from the management device 100 , the biometric authentication device 200 , It stores the data received from the contact sensor 300, the gate device 400, etc., the inquiry information 521, and other data used for the service according to the embodiment of the present invention.
  • the interview information 521 includes, for example, identification information (for example, ID, name, etc.), temperature information (optional), body temperature information, date and time information, check item information, etc. included.
  • the body temperature information is information indicating the body temperature of the person who wishes to enter/exit as measured by a thermometer or the like.
  • the date and time information is information indicating the date and time when the medical interview information 521 was generated by the person who wishes to enter and leave.
  • the check item information is information necessary for checking the health condition of the person who wishes to enter and leave, such as whether or not he or she has a sore throat or body pain.
  • the display 530 displays text, images, videos, etc. based on signals from the CPU 510 .
  • the display 530 displays medical inquiry information 521 (see FIG. 10).
  • the display 530 may have a touch panel function.
  • the operation unit 540 is a mouse, a keyboard, buttons, a touch panel, etc., and inputs various commands to the CPU 510 from a person who wishes to enter/exit.
  • a person who wishes to enter/exit can input inquiry information 521 (see FIG. 10) via the operation unit 540, for example.
  • Communication Interface Communication interface 550 transmits data from CPU 510 to other devices such as management device 100 , biometric device 200 , non-contact sensor 300 and gate device 400 via communication network 50 . Conversely, communication interface 550 receives data from other devices such as biometric authentication device 200 , non-contact sensor 300 , and gate device 400 via communication network 50 and transfers the data to CPU 510 .
  • processing SB will be described with reference to FIG.
  • process SB processes of steps Sb1 to Sb3 are executed. Note that the following processing is started when the medical interview information 521 is input to the medical questionnaire input device 500 .
  • Step Sb1 The CPU 110 of the management device 100 receives the medical interview information 521 from the medical questionnaire input device 500 via the communication network 50 .
  • Step Sb3 The CPU 110 of the management device 100 generates an inquiry result table 121 (see FIG. 7) based on the collation table 221 (see FIG. 8) and the inquiry information 521.
  • FIG. More specifically, first, the CPU 110 of the management device 100 collates the identification information included in the received inquiry information 521 with the identification information in the collation table 221 . Then, when the identification information matches, the CPU 110 of the management device 100 generates medical inquiry result information from the check item information of the medical inquiry information 521 .
  • the CPU 110 of the management device 100 generates interview result information based on input from the medical staff who confirmed the check item information of the interview information 521 .
  • the CPU 110 of the management device 100 mechanically generates medical inquiry result information based on the number of YES in the check item information of the medical inquiry information 521 (for example, if the number of YES is 5 or more, the medical inquiry result information “discomfort” is generated). generated).
  • the number of YES may be weighted for each check item information of the inquiry information 521 . For example, if YES is attached to some check item information in the medical interview information 521, the number of YES in that check item information is treated as five instead of one.
  • the CPU 110 of the management device 100 After generating the medical interview result information, the CPU 110 of the management device 100 associates the identification information of the person who wishes to enter/exit, the feature amount information, the medical inquiry information 521, the medical inquiry result information, the medical inquiry information registration date and time information, etc., into the medical inquiry result table 121. complete the The process then ends here.
  • the switching signal generated by the non-contact sensor 300 arranged on the side of the entrance gate En of the gate device 400 is used to switch the biometric authentication device 200 from the authentication mode to the entrance stamping mode. is a signal.
  • the switching signal generated by the non-contact sensor 300 arranged on the exit gate Ex side of the gate device 400 is a signal for causing the biometric authentication device 200 to switch from the authentication mode to the exit stamping mode.
  • processing SSE in biometric authentication device 200
  • processing SSE is executed when a switching signal is transmitted from the non-contact sensor 300 (that is, when a person who wishes to enter/exit places his or her hand over the non-contact sensor 300), and the processing of step SSe3 below is performed by:
  • the process is started when the person wishing to enter/exit stands in front of the photographing unit 260 of the biometrics authentication device 200 so that the face of the person wishing to enter/exit is within the photographing range of the photographing unit 260 of the biometrics authentication device 200 .
  • Step SSe1 CPU 210 of biometric device 200 receives a switching signal from non-contact sensor 300 via communication network 50 . Then, the CPU 210 of the biometric authentication device 200 switches the authentication mode to the clocking mode. More specifically, when the CPU 210 of the biometric authentication device 200 receives a switching signal from the non-contact sensor 300 arranged on the entrance gate En side of the gate device 400, it switches the authentication mode to the entrance stamping mode. When the CPU 210 of the biometric authentication device 200 receives a switching signal from the non-contact sensor 300 arranged on the exit gate Ex side of the gate device 400, the CPU 210 switches the authentication mode to the exit stamping mode.
  • Step SSe3 The CPU 210 of the biometric authentication device 200 determines whether or not a certain period of time has passed since the process of step SSe1 was executed.
  • the certain period of time is, for example, a sufficient amount of time from when the person who wishes to enter/exit places his or her hand over the non-contact sensor 300 to when he or she stands in front of the photographing unit 260 of the biometric authentication device 200 .
  • step SSe5 If NO in step SSe3- If the predetermined time has not elapsed, the process from step SSe5 is executed.
  • step SSe23 If YES in step SSe3- When the fixed time has passed, the process from step SSe23 is executed.
  • Step SSe5 The photographing unit 260 of the biometric authentication device 200 acquires the face image of the person who wishes to enter/exit.
  • Step SSe7 The CPU 210 of the biometric authentication device 200 extracts feature amount information from the acquired face image. Note that a known method or a method that will be developed in the future is used for extracting feature amount information.
  • Step SSe9 The CPU 210 of the biometric authentication device 200 collates the extracted feature amount information with the collation table 221 (see FIG. 8).
  • Step SSe11 The CPU 210 of the biometric authentication device 200 determines whether or not the extracted feature amount information matches the feature amount information in the matching table 221 .
  • step SSe11- If the extracted feature amount information matches the feature amount information in the matching table 221 (that is, if the face authentication is successful), the processing from step SSe13 is executed.
  • step SSe11- If the extracted feature amount information does not match the feature amount information in the collation table 221 (that is, if face authentication fails), the processing from step SSe15 is executed.
  • Step SSe13 The CPU 210 of the biometric authentication device 200 generates a face authentication result table 222 indicating that face authentication has succeeded.
  • the CPU 210 of the biometric authentication device 200 stores date and time information (for example, information such as 2021/4/1 8:55) when face authentication was performed (successfully) in the face authentication result table. 222, and by inputting the symbol ⁇ in the authentication success/failure information corresponding to the date/time information, it is indicated that the face authentication was successful.
  • date and time information for example, information such as 2021/4/1 8:55
  • the CPU 210 of the biometrics authentication device 200 flags the date and time information when the face authentication is successful, and collates the flagged date and time information with the interview information registration date and time information of the interview result table 121 .
  • the CPU 210 of the biometric authentication device 200 may receive the medical interview result table 121 from the management device 100 in advance, or send the flagged date and time information to the management device 100 to manage the verification results. It may be received from device 100 .
  • Step SSe15 The CPU 210 of the biometric authentication device 200 generates a face authentication result table 222 indicating that face authentication has failed.
  • the CPU 210 of the biometric authentication device 200 reflects date and time information when face authentication was performed (failed) (that is, date and time information when the switching signal was received) in the face authentication result table 222.
  • failed date and time information when face authentication was performed
  • the face authentication result table 222 By inputting a symbol x into the authentication success/failure information corresponding to the date and time information, it is indicated that the face authentication has failed.
  • Step SSe17 In the CPU 210 of the biometrics authentication device 200, the flagged date and time information and the medical interview information registration date and time information in the medical interview result table 121 are the same (the date and month may be the same, and the time does not have to be the same. ).
  • step SSe17- If the flagged date and time information is the same as the medical inquiry information registration date and time information in the medical inquiry result table 121, the process from step SSe19 is executed.
  • step SSe17- If NO at step SSe17- If the flagged date and time information and the medical inquiry information registration date and time information in the medical inquiry result table 121 are not the same, the process from step SSe21 is executed.
  • Step SSe19 The CPU 210 of the biometric authentication device 200 reflects the information indicating entry or exit to the flagged date and time information. As a result, entry or exit is recorded in the face authentication result table 222 (see FIG. 9).
  • Information indicating entry is acquired by the biometric device 200 arranged on the side of the entrance gate En of the gate device 400 . That is, the information indicating entry is acquired when the biometric authentication device 200 is in the entry stamping mode.
  • Information indicating exit is acquired by the biometric authentication device 200 arranged on the exit gate Ex side of the gate device 400 . That is, the information indicating exit is acquired when the biometric authentication device 200 is in the exit stamping mode.
  • the CPU 210 of the biometric authentication device 200 generates door-opening command information and transmits the door-opening command information to the gate device 400 via the communication network 50 .
  • Step SSe21 The CPU 210 of the biometric device 200 generates alarm notification information and transmits the alarm notification information to the gate device 400 via the communication network 50 . The process then ends here.
  • Step SSe23 The CPU 210 of the biometric authentication device 200 switches the clocking mode to the authentication mode. The process then ends here.
  • processing TSE in biometric authentication device 200
  • processing TSE is performed when the switching signal is not transmitted from the non-contact sensor 300 (that is, when the person who wishes to enter/exit does not hold his or her hand over the non-contact sensor 300, or when the biometric authentication device 200 is in the authentication mode).
  • the person wishing to enter/exit is placed in front of the photographing unit 260 of the biometrics authentication device 200 so that the face of the person wishing to enter/exit falls within the photographing range of the photographing unit 260 of the biometrics authentication device 200. It is started with the opportunity to stand at
  • Step TSe1 The photographing unit 260 of the biometric authentication device 200 acquires the face image of the person who wishes to enter/exit.
  • Step TSe3 The CPU 210 of the biometric authentication device 200 extracts feature amount information from the acquired face image. Note that a known method or a method that will be developed in the future is used for extracting feature amount information.
  • Step TSe5 The CPU 210 of the biometric authentication device 200 collates the extracted feature amount information with the collation table 221 (see FIG. 8).
  • Step TSe7 The CPU 210 of the biometric authentication device 200 determines whether or not the extracted feature amount information matches the feature amount information in the matching table 221 .
  • step TSe7- If the extracted feature amount information matches the feature amount information in the matching table 221 (that is, if the face authentication is successful), the processing from step TSe9 is executed.
  • step TSe7- If NO in step TSe7- If the extracted feature amount information does not match the feature amount information in the matching table 221 (that is, if face authentication fails), the process from step TSe11 is executed.
  • Step TSe9 The CPU 210 of the biometric authentication device 200 generates a face authentication result table 222 indicating that face authentication has succeeded. For example, as shown in FIG. 9, the CPU 210 of the biometric authentication device 200 acquires date and time information (for example, information such as 8:55 on April 1, 2021) at which face authentication was performed, and stores the information in the face authentication result table 222. , and by entering the symbol ⁇ in the authentication success/failure information corresponding to the date information, it is indicated that the face authentication was successful.
  • date and time information for example, information such as 8:55 on April 1, 2021
  • Step TSe11 The CPU 210 of the biometric authentication device 200 generates a face authentication result table 222 indicating that face authentication has failed. For example, as shown in FIG. 9, the CPU 210 of the biometric authentication device 200 acquires date and time information (for example, information such as 2021/4/1 9:00) on which face authentication was performed, and stores the information in the face authentication result table 222. , and by inputting a symbol x into the authentication success/failure information corresponding to the date and time information, it is indicated that the face authentication has failed.
  • date and time information for example, information such as 2021/4/1 9:00
  • Step TSe13 The CPU 210 of the biometric authentication device 200 generates door-opening command information and transmits the door-opening command information to the gate device 400 via the communication network 50 . The process then ends here.
  • Step TSe15 The CPU 210 of the biometric device 200 generates alarm notification information and transmits the alarm notification information to the gate device 400 via the communication network 50 . The process then ends here.
  • process SSG processes of steps SSg1 to SSg11 are executed.
  • the following processing is started when steps SSe19 and SSe21 of processing SSE and steps TSe19 and TSe21 of processing TSE in the biometric authentication device 200 are performed.
  • Step SSg1 First, the CPU 410 of the gate device 400 receives door opening command information or alarm notification information from the biometric authentication device 200 via the communication network 50 .
  • Step SSg3 The CPU 410 of the gate device 400 determines whether or not door opening command information has been received.
  • step SSg5 If YES at step SSg3- When the CPU 410 of the gate device 400 receives the door opening instruction information, the process from step SSg5 is executed.
  • step SSg7 If NO at step SSg3- If the CPU 410 of the gate device 400 has not received the door opening command information (that is, if it has received the alarm notification information), the process from step SSg7 is executed.
  • Step SSg5 The CPU 410 of the gate device 400 opens the opening/closing door 460 based on the received door opening command information. By opening the opening/closing door 460 , a person who wishes to enter/exit can enter/exit through the gate device 400 .
  • Step SSg7 The CPU 410 of the gate device 400 keeps the open/close door 460 closed based on the received alarm notification information. By keeping the opening/closing door 460 closed, a person who wishes to enter/exit cannot enter/exit through the gate device 400 . The process then ends here.
  • Step SSg9 The CPU 410 of the gate device 400 determines whether or not a certain period of time has passed since the door 460 was opened.
  • the certain period of time is, for example, a period of time from when the opening/closing door 460 is opened to when one person who wishes to enter/exit finishes passing through the gate device 400 .
  • step SSg9- If YES at step SSg9- When the fixed time has passed, the process from step SSg11 is executed.
  • step SSg9 If NO at step SSg9- If the predetermined time has not passed, the process from step SSg9 is repeated.
  • Step SSg11 The CPU 410 of the gate device 400 closes the opening/closing door 460 . The process then ends here.
  • the entrance/exit management system 1 As described above, the entrance/exit management system 1 according to the embodiment of the present invention, as a whole, as shown in the functional block diagram of FIG. 200B, switching signal transmission means 300A, alarm notification means 400A, gate device 400, open/close door 460, and the like.
  • the information registration unit 100A is implemented, for example, by the CPU 110 of the management device 100 executing a program in the memory 120 (a program for executing the process of step Sb3 in FIG. 11, etc.).
  • the biometrics authentication means 200A for example, the CPU 210 of the biometrics authentication device 200 executes a program in the memory 220 (a program for executing processes such as steps SSe5 to SSe11 in FIG. 12 and steps TSe1 to TSe7 in FIG. 13).
  • the mode switching means 200B is implemented by, for example, the CPU 210 of the biometrics authentication device 200 executing a program in the memory 220 (a program for executing processes such as steps SSe1 and SSe23 in FIG. 12).
  • 300 A of switching signal transmission means are implement
  • 400 A of alarm notification means are implement
  • the CPU 210 of the biometric authentication device 200 receives a switching signal from the non-contact sensor 300 via the communication network 50 and switches to the clocking mode. If the received date/time information and the interview information registration date/time information in the interview result table 121 are not the same, alarm notification information is generated and transmitted to the gate device 400 via the communication network 50 . Then, the CPU 410 of the gate device 400 keeps the open/close door 460 closed based on the received alarm notification information. For this reason, the entrance/exit management system 1 can reduce forgetting to record entry or exit, and can promote the provision of interview information to people entering or exiting.
  • the gate device 400 is divided into an entrance gate En and an exit gate Ex.
  • the biometric authentication device 200 and the non-contact sensor 300 are arranged on the entrance gate En side and the exit gate Ex side of the gate device 400, respectively. Therefore, in this entrance/exit management system 1, a person who wishes to enter/exit can smoothly enter/exit compared to a gate device in which one gate serves as both an entrance gate and an exit gate.
  • a part of the processing of the entrance/exit management system 1 may be realized by the CPU 110 of the management device 100 executing the program of the memory 120, or the CPU 110 of the management device 100 may Data may be relayed between the authentication device 200 and the non-contact sensor 300 or between the biometric authentication device 200 and the gate device 400 .
  • the CPU 210 of the biometric authentication device 200 receives the switching signal from the non-contact sensor 300 via the communication network 50, but the CPU 110 of the management device 100 A switching signal may be received from the non-contact sensor 300 via the communication network 50 and may be transmitted to the biometric authentication device 200 via the communication network 50 .
  • the CPU 410 of the gate device 400 receives door opening command information or alarm notification information from the biometrics authentication device 200 via the communication network 50, but the management device CPU 110 of 100 receives door opening command information or alarm notification information from biometric device 200 via communication network 50 and transmits door opening command information or alarm notification information to gate device 400 via communication network 50.
  • the CPU 210 of the biometric authentication device 200 extracts feature amount information from the face image of the person entering and leaving the hall, and checks the extracted feature amount information against the matching table 221.
  • the face authentication result table 222 is generated by determining whether or not the face authentication is successful, but the CPU 110 of the management device 100 may perform these processes.
  • the CPU 210 of the biometric authentication device 200 needs to transmit the facial image of the person entering and leaving the venue to the management device 100 via the communication network 50 .
  • the CPU 210 of the biometric authentication device 200 compares the date and time information of face authentication with the interview information registration date and time information of the interview result table 121, or Although it is determined whether or not entry or exit has already been recorded in the table 222, the CPU 110 of the management device 100 may perform these processes. In such a case, the CPU 210 of the biometrics authentication device 200 needs to transmit the face authentication result table 222 to the management device 100 via the communication network 50 .
  • a program for executing part or all of the processing shown in FIGS. 11 to 14 can be downloaded to management device 100, biometric authentication device 200, non-contact sensor 300, and gate device 400 via the Internet or the like. Preferably.
  • the photographing unit 260 of the biometric authentication device 200 acquires the facial image of the person who wishes to enter/exit, and the CPU 210 of the biometric authentication device 200 extracts feature amount information from this facial image.
  • face authentication the authentication of those who wish to enter and exit was performed.
  • the means for authenticating a person who wishes to enter/exit is not limited to face authentication, and iris authentication means, fingerprint authentication means, voiceprint authentication means, or the like may be used.
  • the gate device 400 is divided into the entrance gate En and the exit gate Ex.
  • one gate may serve as an entrance gate and an exit gate.
  • the biometric device 200 and the non-contact sensor 300 are arranged on the entrance gate En side and the exit gate Ex side of the gate device 400, respectively.
  • the biometrics authentication device 200 and one non-contact sensor 300 may be arranged in the gate device 400 (for example, the boundary portion between the entrance gate En and the exit gate Ex of the gate device 400).
  • step TSe13 was executed after step TSe9.
  • steps TSe9a, TSe9b and TSe9c as shown in FIG. 16 may be executed between steps TSe9 and TSe13.
  • the steps TSe9a, TSe9b, and TSe9c will be described in detail below.
  • Step TSe9a The CPU 210 of the biometric authentication device 200 determines whether or not entry or exit has already been recorded in the face authentication result table 222 .
  • step TSe9a When entry or exit is already recorded in the face authentication result table 222 (that is, when the person who wishes to enter/exit has entered/exited at least once in the clocking mode on the day of the date and time information when the face authentication was performed) ), the processing from step TSe9b is executed.
  • step TSe9a When entry or exit is not recorded in the face authentication result table 222 (that is, when the person who wishes to enter/exit has never entered/exited in the clocking mode on the day of the date and time information when face authentication was performed), The processing from step TSe15 is executed.
  • Step TSe9b The CPU 210 of the biometrics authentication device 200 collates the date/time information when the face authentication is performed with the interview information registration date/time information of the interview result table 121 .
  • the CPU 210 of the biometrics authentication device 200 may receive the medical interview result table 121 from the management device 100 in advance, or transmit information on the date and time when the face authentication was performed to the management device 100 to obtain the verification result. may be received from the management device 100 .
  • Step TSe9c The CPU 210 of the biometric authentication device 200 determines that the date and time information when the face authentication is performed is the same as the interview information registration date and time information in the medical interview result table 121 (the month and day may be the same, but the time does not have to be the same). not.).
  • step TSe9c If the date and time information of face authentication is the same as the date and time information of inquiry information registration in the inquiry result table 121, the process from step TSe13 is executed.
  • step TSe9c If the date and time information of face authentication is not the same as the interview information registration date and time information in the interview result table 121, the process from step TSe15 is executed.
  • step TSe9a and steps TSe9b-TSe9c may be executed, or step TSe9a may be executed after steps TSe9b-TSe9c.
  • step TSe15 may be executed.
  • the CPU 210 of the biometric authentication device 200 receives the flagged date/time information or face authentication date/time information and the interview information registration date/time information of the interview result table 121.
  • Alarm notification information is generated and transmitted to the gate device 400 via the communication network 50 when they are not the same or when face authentication fails.
  • the CPU 410 of the gate device 400 maintains the closed state of the open/close door 460 of the gate device 400 based on the received alarm notification information (that is, it is possible to maintain the closed state of the open/close door 460 of the gate device 400). It was set as an alarm.).
  • the entrance/exit management system 1 is further provided with a device that emits a warning sound (e.g., a speaker) or a device that displays a warning (e.g., a display, a device that emits light, etc.) good.
  • these devices may be configured additionally to the management device 100 , the biometric authentication device 200 , the non-contact sensor 300 , and the gate device 400 .
  • the flagged date/time information or face authentication date/time information is not the same as the interview information registration date/time information in the medical interview result table 121, or when face authentication fails, these devices generate an alarm. Notification information may be received and an alarm may be issued to those wishing to enter and exit.
  • the alarm notification pattern may be changed as appropriate.
  • the speaker emits an A beep and emits a color A light
  • the speaker emits a B beep and emits a B color light.
  • the opening/closing door 460 of the gate device 400 may be opened as long as the face authentication is successful.
  • the entrance/exit management system according to modification (E) and the entrance/exit management system according to modification (F) are combined and applied will be described.
  • the processing TSE in the biometrics authentication device 200 if entry or exit is not recorded in the face authentication result table 222, or if the face authentication date and time information and the interview information registration date and time information in the interview result table 121 are different. If they are not the same, the CPU 210 of the biometrics authentication device 200 can generate alarm notification information for keeping the open/close door 460 of the gate device 400 closed, or a device that emits a warning sound or a device that displays a warning. It is also possible to generate alarm notification information to alarm the
  • step SSe13 of the processing SSE in the biometric authentication device 200 the date and time information when the face authentication was successful is flagged.
  • the flag may be set on the date and time information when the switching signal was received from the non-contact sensor 300 instead of the date and time information when the face authentication was successful. Then, this date/time information may be reflected in the face authentication result table 222 .
  • the biometric authentication device 200 is further provided with a temperature detection unit and the body temperature of the person who wishes to enter/exit measured by this temperature detection unit is equal to or higher than the threshold
  • the opening/closing door 460 of the gate device 400 may be prevented from being opened.
  • the temperature detection unit of the biometrics authentication device 200 is, for example, a non-contact temperature detection sensor. step TSe1, etc.), the body temperature information of the person who wishes to enter/exit is acquired. Although not shown, the CPU 210 of the biometric authentication device 200 may associate this body temperature information with the face authentication result table 222 (see FIG. 9). Then, the CPU 210 of the biometric authentication device 200 determines whether or not the body temperature information of the person who wishes to enter/exit for whom face authentication has been successful is equal to or greater than the threshold.
  • the threshold is a numerical value (for example, 37.5 degrees) determined by the administrator of the entrance/exit management system 1, medical staff, health institutions, and the like.
  • the CPU 210 of the biometrics authentication device 200 If the body temperature information is not equal to or greater than the threshold (that is, if the body temperature information is less than the threshold) (for example, body temperature information: 36.5 degrees, threshold: 37.5 degrees), the CPU 210 of the biometrics authentication device 200 outputs the door opening instruction information. and transmits the door opening instruction information to the gate device 400 via the communication network 50 . On the other hand, if the body temperature information is equal to or greater than the threshold (for example, body temperature information: 38 degrees, threshold: 37.5 degrees), the CPU 210 of the biometric authentication device 200 generates alarm notification information and notifies the alarm via the communication network 50. The information is transmitted to the gate device 400, and the CPU 410 of the gate device 400 keeps the open/close door 460 closed based on the received alarm notification information.
  • the threshold for example, body temperature information: 36.5 degrees, threshold: 37.5 degrees
  • the CPU 210 of the biometric authentication device 200 If the body temperature information is equal to or greater than the threshold (for example, body temperature information
  • the CPU 210 of the biometric authentication device 200 determines whether it is NO in step SSe3 of the process SSE, when the process of step SSe19 is finished, or when the process of step SSe21 is finished. case, the stamping mode is switched to the authentication mode in step SSe23. However, the CPU 210 of the biometrics authentication device 200 may switch the stamping mode to the authentication mode by receiving a switching signal from the non-contact sensor 300 via the communication network 50 when the biometric authentication device 200 is in the stamping mode.
  • the CPU 210 of the biometric authentication device 200 receives the switching signal from the non-contact sensor 300 via the communication network 50 and stamps the authentication mode in step SSe1 of the process SSE. I switched to mode. However, the CPU 210 of the biometric authentication device 200 may switch the authentication mode to the embossing mode between steps SSe17 and SSe19 of the process SSE without switching the authentication mode to the embossing mode in step SSe1 of the process SSE. .
  • step SSe17 the flag If the set date and time information and the interview information registration date and time information in the medical interview result table 121 are not the same, the authentication mode can be maintained.
  • the CPU 210 of the biometrics authentication device 200 reflects the information indicating entry or exit to the flagged date and time information as long as the face authentication is successful in the time stamping mode, and the door opening command information is issued.
  • the door opening command information is generated and transmitted to the gate device 400 via the communication network 50 .
  • the biometric authentication device 200 may be configured to switch between clocking modes. That is, the biometric authentication device 200 may switch the entrance stamping mode to the exit stamping mode, or switch the exit stamping mode to the entrance stamping mode. In such a case, when the biometric device 200 receives a signal for switching between the clock modes generated by the non-contact sensor 300 or other signal generator, the entrance clock mode changes to the exit clock mode (or the exit clock mode). is preferably switched to entry stamping mode). It should be noted that the entry embossing mode or the exit embossing mode may be determined based on the time zone or the like.
  • Entrance/Exit Management System 100A Information Registration Unit 200: Biometric Authentication Device 200A: Biometric Authentication Means 200B: Mode Switching Means 300A: Switching Signal Transmission Means 400: Gate Device 400A: Alarm Notification Means 460: Opening/Closing Door

Abstract

La présente invention aborde le problème de réduction de la possibilité qu'un temps d'entrée ou un temps de sortie non intentionnelle d'une personne entrant dans ou sortant d'une pièce soit enregistré. Ce système de gestion des entrées/sorties (1) comprend un dispositif d'authentification biométrique (200) et un moyen d'émission de signal de commutation (300A). Le dispositif d'authentification biométrique inclut un moyen d'authentification biométrique (200A) et un moyen de commutation de mode (200B). Le moyen de commutation de mode peut commuter le dispositif d'authentification biométrique entre : un mode d'empreinte destiné à enregistrer une entrée et/ou une sortie lorsque le moyen d'authentification biométrique finit de réaliser une authentification ; et un mode d'authentification uniquement destiné à amener le moyen d'authentification biométrique à réaliser une authentification. Le moyen d'émission de signal de commutation émet, au dispositif d'authentification biométrique, un signal de commutation destiné à amener le moyen de commutation de mode à commuter entre les modes. Le dispositif d'authentification biométrique commute du mode d'authentification au mode d'empreinte lorsque le signal de commutation est envoyé à partir du moyen d'émission de signal de commutation.
PCT/JP2022/012217 2021-07-01 2022-03-17 Système de gestion des entrées/sorties WO2023276322A1 (fr)

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Citations (4)

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JP2009110068A (ja) * 2007-10-26 2009-05-21 Mitsubishi Electric Corp 入場管理システム
JP2010262384A (ja) * 2009-04-30 2010-11-18 Ricoh Co Ltd 健康管理システム、健康管理方法及び健康管理プログラム
JP2015194930A (ja) * 2014-03-31 2015-11-05 セコム株式会社 情報処理装置及び情報処理システム
JP2018022320A (ja) * 2016-08-03 2018-02-08 清水建設株式会社 入退場管理システム

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JP7060492B2 (ja) * 2018-11-07 2022-04-26 株式会社 日立産業制御ソリューションズ セキュリティシステムおよび管理プログラム

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Publication number Priority date Publication date Assignee Title
JP2009110068A (ja) * 2007-10-26 2009-05-21 Mitsubishi Electric Corp 入場管理システム
JP2010262384A (ja) * 2009-04-30 2010-11-18 Ricoh Co Ltd 健康管理システム、健康管理方法及び健康管理プログラム
JP2015194930A (ja) * 2014-03-31 2015-11-05 セコム株式会社 情報処理装置及び情報処理システム
JP2018022320A (ja) * 2016-08-03 2018-02-08 清水建設株式会社 入退場管理システム

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