WO1997017674A1 - Systeme de recueil de caracteristiques de l'iris - Google Patents

Systeme de recueil de caracteristiques de l'iris Download PDF

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Publication number
WO1997017674A1
WO1997017674A1 PCT/JP1996/003290 JP9603290W WO9717674A1 WO 1997017674 A1 WO1997017674 A1 WO 1997017674A1 JP 9603290 W JP9603290 W JP 9603290W WO 9717674 A1 WO9717674 A1 WO 9717674A1
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WO
WIPO (PCT)
Prior art keywords
iris data
iris
unit
data
registration
Prior art date
Application number
PCT/JP1996/003290
Other languages
English (en)
Japanese (ja)
Inventor
Toru Mori
Shinichi Sutou
Kazuyuki Ohashi
Original Assignee
Oki Electric Industry Co., Ltd.
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Oki Electric Industry Co., Ltd. filed Critical Oki Electric Industry Co., Ltd.
Priority to KR1019970704647A priority Critical patent/KR100300623B1/ko
Publication of WO1997017674A1 publication Critical patent/WO1997017674A1/fr

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Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06TIMAGE DATA PROCESSING OR GENERATION, IN GENERAL
    • G06T7/00Image analysis
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B3/00Apparatus for testing the eyes; Instruments for examining the eyes
    • A61B3/10Objective types, i.e. instruments for examining the eyes independent of the patients' perceptions or reactions
    • A61B3/12Objective types, i.e. instruments for examining the eyes independent of the patients' perceptions or reactions for looking at the eye fundus, e.g. ophthalmoscopes
    • A61B3/1216Objective types, i.e. instruments for examining the eyes independent of the patients' perceptions or reactions for looking at the eye fundus, e.g. ophthalmoscopes for diagnostics of the iris
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06VIMAGE OR VIDEO RECOGNITION OR UNDERSTANDING
    • G06V40/00Recognition of biometric, human-related or animal-related patterns in image or video data
    • G06V40/10Human or animal bodies, e.g. vehicle occupants or pedestrians; Body parts, e.g. hands
    • G06V40/18Eye characteristics, e.g. of the iris
    • 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 iris data collating system for registering and collating iris data for personal identification.
  • iris individual data that is, personal identification technology based on iris data
  • how to register and manage iris data, and the iris data of customers who have visited transactions Consideration must be given to how to obtain and match the registered iris data.
  • personal identification technology based on iris data is used for other purposes, such as For example, when used for building access control, etc., these considerations must be taken into account, and consideration must also be given to making the configuration practical according to the application.
  • the present invention employs the following configuration to solve the above problems.
  • the system consists of a camera that captures the iris of a person, an iris data acquisition unit that uses the image of the iris of the person captured by the camera to generate iris data for personal identification, and performs personal identification on the iris data.
  • An iris data registration unit that stores the iris data in association with the iris data registration unit, and stores the iris data in association with the personal identification attribute data when registering the iris data in the iris data registration unit.
  • An iris data registration control unit that controls the iris data registration process, and an iris that compares the new iris data imported from the iris data acquisition unit with the iris data stored in the iris data registration unit It has a data collation processing unit and a collation result output unit that outputs the result collated by the iris data collation processing unit. Then, the iris data registration unit, the iris data registration control unit, the iris data collation processing unit, the collation result output unit, and the like are provided in a terminal capable of performing a predetermined arbitrary process. ing.
  • This system is characterized in that terminals verify users.
  • This system is particularly suitable for performing personal identification using iris data at a specific location.
  • an access control system a system that manages access to buildings
  • collation of visitors and exits collation of users in safe deposit boxes
  • collation of users on a personal computer The iris data can be used for personal identification with a relatively small amount of data. Therefore, even a terminal such as a personal computer can register and verify iris data of a sufficiently large number of subjects. This system was designed with this point in mind.
  • the system consists of a camera that captures the iris of a person, an iris data acquisition unit that generates iris data for personal identification by incorporating the image of the iris of the person captured by the camera, and a iris data acquisition unit that captures the iris data for personal identification.
  • An iris data registration unit that stores the iris data in association with the attribute data, and stores the iris data in association with the personal identification attribute data when the iris data is registered in the iris data registration unit.
  • An iris data registration control unit that controls the iris data registration process, and an iris data that compares the new iris data taken from the iris data acquisition unit with the iris data stored in the iris data registration unit.
  • the iris data registration section described above is provided in the storage section of the portable article, and the iris data registration control section, the iris data collation processing section, the collation result output section, etc. are provided in the portable article section. It is provided in a terminal that has the function of communicating with the terminal and that can perform any specified processing.
  • Iris data is important data for personal identification. Therefore, for safety reasons, it is preferable to store the information so that it cannot be used by others. Therefore, in this system, the iris data is registered in a portable article such as a card owned by the user, and the terminal reads the iris data from the card when performing personal identification. (Configuration 3)
  • the system consists of a camera that captures the iris of a person, an iris data acquisition unit that generates iris data for personal identification by taking in images of the iris of the person captured by the camera, and an individual that captures the iris data.
  • An iris data registration unit that stores the iris data in association with the attribute data for identification, and stores the iris data in association with the attribute data for personal identification when the iris data is registered in the iris data registration unit.
  • the iris data registration control unit that controls the iris data registration process matches the new iris data taken from the iris data acquisition unit with the iris data stored in the iris data registration unit.
  • Iris data collation processor collation result output unit that outputs the result collated by the iris data collation processor, and communicates with portable goods And a terminal capable of performing predetermined processing.
  • the above-described iris data registration unit, iris data registration control unit, iris data collation processing unit, collation result output unit, and the like are provided in the storage unit and the operation unit of the portable article.
  • This system registers the iris data in a portable article such as an IC card, etc., owned by the person in order to more strictly manage the iris data, and also performs collation processing inside the portable article. It is characterized by the following. In the system configured in this way, the registered iris data is not taken out of the portable article, so that there is no risk of being misused by others.
  • the system includes a camera that captures an iris of a person, an iris data acquisition unit that takes in an image of the iris of the person captured by the camera and generates iris data for personal identification, and An iris data registration unit that stores the iris data in association with personal identification attribute data, and iris data An iris data registration control unit that controls the iris data registration process so that the iris data is stored in association with the personal identification attribute data when registering the iris data in the data registration unit; An iris data matching processor that compares the new iris data imported from the iris with the iris data stored in the iris data register, and a matching result output that outputs the result matched by the iris data matching processor Section.
  • the iris data registration unit, the iris data registration control unit, and the like described above are provided in a host computer capable of performing predetermined processing, and the iris data matching processing unit and the matching result output unit are provided. And the like are provided in a terminal having a function of communicating with the host computer and capable of performing predetermined processing.
  • iris data be centrally managed by a host computer. Therefore, in this system, the host computer is provided with an iris data registration unit and the like, and the iris data is read from the host computer to the terminal.
  • This system considers that since the amount of iris data per case is relatively small, it can be processed at high speed even when personal identification is performed at a remote place via a communication line. It is configured.
  • the iris data collation processing unit and the like are provided in the terminal so as to reduce the load on the computer.
  • the system consists of a camera that captures the iris of a person, an iris data acquisition unit that generates iris data for personal identification by taking an image of the iris of the person captured by the camera, Iris data registration unit that stores the iris data in association with the attribute data
  • the iris data registration control unit that controls the iris data registration process so that the iris data is recorded in association with the personal identification attribute data when registering in the data registration unit.
  • An iris data comparison unit that collates the new iris data taken from the unit with the iris data stored in the iris data registration unit, and a collation result that outputs the result collated by the iris data comparison unit It has an output unit and a terminal having a function of communicating with the host computer and capable of performing predetermined processing.
  • the host computer is provided with the iris data registration unit, the iris data registration control unit, the iris data collation processing unit, the collation result output unit, and the like.
  • This system is characterized in that the host computer performs everything from registration of the license data to collation processing. This system is suitable when the host computer has sufficient processing power.
  • the system consists of a camera that captures the iris of a person, an iris data acquisition unit that generates iris data for personal identification by incorporating the image of the iris of the person captured by the camera, and a iris data acquisition unit that captures the iris data for personal identification.
  • An iris data registration unit that stores the iris data in association with the attribute data, and stores the iris data in association with the personal identification attribute data when the iris data is registered in the iris data registration unit.
  • An iris data registration control unit that controls the iris data registration process; and an iris data registration unit that compares new iris data acquired from the iris data acquisition unit with iris data stored in the iris data registration unit.
  • a resource data collating unit, a collation result output unit that outputs a result collated by the iris data collating unit, and a host computer It has a function of communicating with over data and any processing to perform the defined And an iris data collation computer capable of performing such operations.
  • the iris data registration section and the iris data registration control section described above are provided in the host computer, and the iris data stored in the host computer is read out from the host computer and stored.
  • the iris data collation processing unit that collates the iris data stored in the iris data registration unit with the new iris data imported from the iris data acquisition unit.
  • a verification result output unit for outputting the results is provided in the iris data verification computer.
  • the collation processing can be distributed to the iris data collation computer.
  • iris data is registered in the host computer, and the iris data is transferred to the iris data verification computer and registered there.
  • the system configured in this way can use the iris data registered in the host computer as a master file, and can use the iris data registered in the iris data collation computer as an operation file.
  • This system may be configured to connect multiple iris data acquisition units to one terminal, or to connect one or more iris data acquisition units to each of multiple terminals. It may be configured.
  • iris data registration unit of the terminal iris data that can identify individuals reliably is simplified and iris data with low personal identification accuracy is registered. (Description of Configuration 7)
  • the terminals are installed at all places, such as gates, building doors, and corridors.
  • a huge storage device is required for each terminal.
  • Large space is needed for installation.
  • huge costs are incurred. Therefore, in this system, even if the person to be monitored cannot be reliably identified, iris data that has been simplified so that the person to be monitored can possibly be identified is registered in the terminal. This allows the system to roughly identify where the monitored person is.
  • the storage device provided for each terminal can have a small capacity, and the space for installing the storage device can be reduced. Therefore, the cost is low.
  • the configuration of the iris data acquisition unit and the like can be simplified and the collation speed can be increased.
  • iris data that can reliably identify the person to be monitored is registered in one of a large number of terminals installed at major locations, and reliable identification is performed at major locations, or By using appropriate personal identification technology, it is possible to accurately confirm where the monitored person is.
  • FIG. 1 is a block diagram illustrating an iris data collation system according to the first embodiment.
  • FIG. 2 is a flowchart showing the iris data registration process.
  • FIG. 3 is a flowchart showing the iris data collation processing.
  • FIG. 4 is a block diagram showing an iris data matching system of the second embodiment.
  • FIG. 5 is a block diagram showing an iris data matching system of the third embodiment.
  • FIG. 6 is a block diagram showing the iris data matching system of the fourth embodiment.
  • FIG. 7 is a block diagram showing an iris data collation system of Example 5.
  • FIG. 8 is a block diagram showing the iris data matching system of the sixth embodiment. BEST MODE FOR CARRYING OUT THE INVENTION
  • embodiments of the present invention will be described using specific examples.
  • FIG. 1 is a block diagram illustrating an iris data collation system according to the first embodiment.
  • the system in Fig. 1 captures the characteristics of the iris 3 in the eye 2 of the person 1 and obtains data for personal identification.
  • this data is referred to as iris data.
  • the system includes a camera 4, an iris data acquisition unit 5, and a terminal 6 for acquiring the iris data.
  • the camera 4 and the iris data acquisition unit 5 are separated from the terminal 6 as a separate device.
  • the camera 4 and the iris data acquisition unit 5 can be incorporated as an integrated device with the terminal 6.
  • the camera 4 captures an image of the iris 3 of the person 1 and sends an image signal of the iris 3 to the iris data acquisition unit 5.
  • the iris data acquisition unit 5 receives the image signal of the iris 3 of the person 1 from the camera 4
  • the iris 3 is converted into a digital code from this image signal to generate iris data for personal identification, and the iris data is transmitted to the terminal 6.
  • the terminal device 6 acquires a certain amount of iris data for one person in this way, and performs the registration processing or the collation processing of the acquired iris data offline.
  • the terminal device 6 takes the form of, for example, a personal computer / automatic transaction device.
  • the terminal 6 includes an iris data registration unit 7, an iris data collation processing unit 8, a collation result output unit 9, an iris data registration control unit 10, and the like.
  • the iris data registration unit 7 includes a storage device, and registers iris data of a person who uses the system.
  • the iris data collation processing unit 8 is composed of an interface for programs and input / output.
  • a new iris data acquisition unit 5 is adopted.
  • the iris data is compared with the iris data registered in the iris data registration unit 7.
  • the collation result output unit 9 is composed of a display and a printer, takes in the collation result from the iris data collation processing unit 8, and outputs the collation result.
  • the iris data registration control unit 10 is composed of an interface for programs and input / output. Register data and in association with each other.
  • the iris data registration unit 7, the iris data collation processing unit 8, the collation result output unit 9, and the iris data registration control unit 10 can be separated from the terminal device 6 as a separate device. Alternatively, it can be incorporated as a device integrated with the terminal device 6.
  • step S1 the system communicates with the camera 4 shown in FIG.
  • the iris data acquisition unit 5 acquires the iris data of the registration target person.
  • step S2 the system incorporates the setting of the attribute data for individual identification of the registration target created by the system staff operating the keyboard or the like of the terminal device 6.
  • the attribute data for personal identification is, for example, the name of the customer divided by the account number of the deposit if the attribute data is used for an automatic transaction device in a financial institution. The name is entered from a keyboard or the like, and the account number is transferred from a host computer or the like.
  • the attribute data for personal identification is the identification number of the researcher when it is used for an access control system in a laboratory or the like.
  • step S3 the system creates a correspondence table by the iris data registration control unit 10.
  • the correspondence table associates personal identification attribute data 15 such as name and account number with iris data 16.
  • the system can obtain the name and account number of the user from the system user's list data.
  • step S4 the system registers the correspondence table in the iris data registration unit 7.
  • the iris data registration control unit 10 shown in FIG. 1 includes a program for executing such a series of registration processing and an interface for input / output.
  • the terminal device 6 is an automatic transaction device in a financial institution.
  • step S11 when a person who desires a new transaction (hereinafter simply referred to as a user) visits the terminal device 6, the system uses the camera 4 and the iris data acquisition unit 5 to transmit the user information. Get the iris data of The method of acquiring iris data is the same as that for registration.
  • step S12 the system uses the iris data collation processing unit 8 Then, the iris data registered in the iris data registration unit 7 is read, and the iris data acquired in step S11 is compared with the iris data read in step S12 for comparison. I do. That is, in the system, the iris data matching processing unit 8 registers the iris data which coincides with the iris data composed of the fixed amount of encoded digital data acquired in step S11.
  • a search process is performed to determine whether or not the data is registered in the part 7. If the matching data is registered in the iris data registration part 7, the attribute data for personal identification 15 registered in association with the data is read out. .
  • the technology conventionally used in character search and other various database search processing is adopted as it is.
  • step S13 the system outputs the collation result by the collation result output unit 9. For example, if the iris data registration unit 7 has iris data that matches the iris data of the user, the display of the terminal device 6 indicates that "there exists iris data", The following is displayed. "If there is no matching iris data," No corresponding iris data "is displayed.
  • the collation result is output to a host computer (not shown) connected to the terminal 6 via a communication line.
  • step S14 the host computer determines whether or not a transaction is possible based on the matching result. Then, when the collation result is “there is applicable iris data”, the process proceeds to step S15, and the transaction is started.
  • the process proceeds to step S16. Then, the terminal device 6 displays, for example, "You have not registered iris data" on the display.
  • the above system is not limited to automatic transaction equipment at financial institutions, but is installed at the entrance of a building to prevent entry and exit by outsiders. Available for management system.
  • the system configured as described above can have a simple configuration because the terminal processes all registration and collation of iris data.
  • FIG. 4 is a block diagram showing an iris data matching system of the second embodiment.
  • This system also includes a camera 4, an iris data acquisition unit 5, and a terminal 6 for acquiring iris data of a person 1. Further, the terminal device 6 is provided with an iris data collation processing unit 8, a collation result output unit 9, an iris data registration control unit 10 and the like.
  • the card 20 carried by the person 1 performs iris data registration processing. That is, the card 20 is provided with an iris data registration unit 7.
  • This card 20 is preferably constituted by, for example, an IC card having a sufficient storage capacity for registering iris data.
  • the card 20 is mounted on a force reader / writer 21, and various data are read and written by the terminal 6 via the card reader 21.
  • the terminal 6 reads the iris data from the iris data registration unit 7 of the card 20 by the iris data collation processing unit 8 of the terminal 6.
  • the terminal device 6 compares the iris data read from the card 20 with the new iris data actually obtained by the camera 4 and the iris data obtaining unit 5 and compares them.
  • the collation result and the like are output by the collation result output unit 9 in the same manner as in 1.
  • the other processing is the same as in the first embodiment.
  • This system has the following effects. That is, in this system, the iris data is registered inside the card 20. Therefore, even if the person operating the terminal 6 does not have the permission of the person in question, the iris data can be obtained. It cannot be easily referenced or modified. Therefore, this system can safely store iris data, which is important data for identity verification. In addition, this system can use the iris data registered in the card 20 not only for a specific terminal, but also for an unspecified terminal or a completely different system.
  • FIG. 5 is a block diagram showing an iris data matching system of the third embodiment.
  • This system improves on the system in Fig. 4 and increases the security of iris data storage.
  • the card 20 such as an IC card carried by the user can store a program for performing iris data collation processing, registration processing, and the like. Therefore, in this specific example, the iris data collation processing unit 8, the collation result output unit 9, the iris data registration control unit 10 and the iris data registration unit 7 are stored in the card 20. It should be noted that the iris data registration section 7 itself needs to store only the iris data of the user himself, and a relatively small storage area is sufficient.
  • the card 20 user when registering the iris data, the card 20 user attaches the card 20 to the force reader / writer 21 and transfers the iris data via the terminal 6. Capture to code 20. Then, in the card 20, the iris data registration control unit 10 and the like operate to perform iris data registration processing. Also, the user of the card 20 mounts a force 20 on the card reader / writer 21 and performs a new iris via the terminal 6 at the time of the verification processing for identity verification. Import data to card 20. Then, in the card 20, the iris data collation processing section 8 and the like operate to perform collation processing, and output the collation result to the terminal 6. Other processing Is the same as that of the specific example 1.
  • the iris data is not output to the terminal device 6. Therefore, the confidentiality of the iris data can be guaranteed. Therefore, the security of the system for personal identification using the iris data can be enhanced.
  • FIG. 6 is a block diagram showing an iris data matching system of the fourth embodiment.
  • the camera 4 and the iris data acquisition unit 5 are connected to the terminal 6, and the terminal 6 and the host computer 30 are connected via the communication line 25.
  • an iris data collation processing unit 8 and a collation result output unit 9 are provided in the control unit of the terminal 6, and an iris data registration unit 7 and an iris data registration control unit 8 are provided in the host computer 30.
  • the system configured as described above can entrust the host computer 30 with control of iris data registration and iris data storage.
  • the terminal 6 calls the host computer 30 at the time of the collation processing, and incorporates iris data necessary for the collation. Then, the terminal device 6 compares the iris data acquired by the camera 4 and the iris data acquisition unit 5 with the iris data acquired from the host computer 30 and collates them. When performing the iris data registration processing and the collation processing, a procedure for transferring the iris data via the communication line 25 is included. Other processes are the same as those described in the first embodiment.
  • iris data can be acquired by a large number of terminals and the iris data can be centrally managed by the host computer 30, so that data management becomes easy. (Specific example 5)
  • FIG. 7 is a block diagram showing an iris data collation system of Example 5.
  • a terminal 6 and a host computer 30 are connected via a communication line 25.
  • the host computer 30 is provided with an iris data registration unit 7, an iris data collation processing unit 8, a collation result output unit 9, and an iris data registration control unit 10.
  • a terminal 6 has a function of acquiring iris data and a function of communicating with a host computer 30 via a communication line 25. The iris data registration processing and collation processing are performed by the host computer 30.
  • the terminal device 6 can have a simple configuration. This system is suitable, for example, when the terminal 6 must be sufficiently reduced in size and the terminal 6 cannot have various functions.
  • FIG. 8 is a block diagram showing an iris data collation system of Example 6.
  • a plurality of cameras 4, a license data acquisition unit 5 and a terminal 6 are connected to a communication line 25. That is, for example, a terminal 6 to which a plurality of cameras 4 and iris data acquisition units 5 are connected, or a plurality of terminal devices to which each of the cameras 4 and iris data acquisition units 5 are connected are arbitrary. As many as are connected to the communication line 25.
  • the host computer 30 is provided with an iris data registration unit 7 and an iris data registration control unit 10 to register iris data in the host computer 30.
  • the iris data collation processing is performed by a function exclusively for iris data collation connected to the host computer 30 via the communication line 25.
  • Iris data verification computer hereinafter simply referred to as another terminal 6 A.
  • the other terminal 6A is provided with an iris data registration unit 7A, an iris data collation processing unit 8, and a collation result output unit 9.
  • the iris data necessary for collation is transferred and copied from the iris data registration unit 7 of the host computer 30 to the iris data registration unit 7A in advance. That is, before the iris data collation processing, an operational file is formed here in advance. Then, when there is a request for collation at an arbitrary timing from a plurality of terminals 6, the other terminal 6A refers to the iris data registration unit 7A, performs iris data collation processing, and compares the collation result. Output by the collation result output unit 9.
  • This system is described below using an example of an automatic transaction device of a financial institution.
  • the terminal 6 is in the form of an automatic transaction device.
  • a number of such automatic transaction devices are installed in one financial institution, each of which is provided with a camera 4 and a file data acquisition unit 5.
  • the automatic transaction apparatus is connected to the host computer 30 or another terminal 6A on-line.
  • registration of iris data is centrally managed by a host computer 30 at a bank head office or the like, and verification of iris data obtained by a large number of automatic transaction machines is performed by other computers. This is performed by the terminal 6A.
  • the system configured in this way can support large-scale systems such as the online trading network of financial institutions. Further, this system is suitable for, for example, a terminal having a small size in an access control system for a building having a large number of entrances.
  • the iris data registration unit 7 registers iris data with a low degree of personal identification accuracy by simplifying the amount of iris data that can reliably identify individuals. can do.
  • a system in which a large number of terminals 6 monitor the behavior of a specific person.
  • a part of the original iris data may be cut out, sampled according to an appropriate rule, or the iris data acquisition process itself may be simplified. Should be generated.
  • the host computer 30 reliably identifies the specific person from the iris data registered in the iris data registration unit 7. Even if not possible, it generates file data simplified so that it is possible to identify the person as a specific person, and transfers the data to another terminal 6A.
  • the other terminal device 6A registers the simplified iris data by the host computer 30 in the iris data registration section 7A. As a result, the amount of iris data registered in the iris data registration unit 7A of the other terminal 6A is sufficiently reduced. Then, when performing personal identification using iris data in another terminal 6A, the simplified iris data registered in the iris data registration unit 7A is used.
  • the accuracy of personal identification is lower than in the case of performing personal identification using the iris data registered in the host computer 30.
  • the storage device provided for each of the other terminals 6A can have a small capacity, and the space for installing the storage device can be reduced. Therefore, this system can be small and low cost. Further, since the amount of data to be collated is small in this system, the configuration of the iris data acquisition unit and the like can be simplified and the collation speed can be increased. This system registers iris data that can identify the person to be monitored with certainty at one of the many terminals installed at major locations, and performs reliable identification at major locations, or By using various personal identification technologies, it is possible to accurately confirm where the monitored person is.

Abstract

Dans le cadre d'une technique d'identification d'individus par les caractéristiques de leur iris, liée à l'utilisation d'appareils automatiques de transactions, ou de dispositifs d'ouverture de porte de bâtiments, etc., on a conçu un système de collationnement comportant: une section d'acquisition des données de l'iris, une section d'enregistrement où sont stockées des caractéristiques de l'iris associées à des donnée caractéristiques d'identification, une section de vérification de l'enregistrement, et une section de collationnement comparant et collationnant les caractéristiques nouvellement acquises de l'iris avec les données précédemment enregistrées dans la section d'enregistrement.
PCT/JP1996/003290 1995-11-08 1996-11-08 Systeme de recueil de caracteristiques de l'iris WO1997017674A1 (fr)

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Application Number Priority Date Filing Date Title
KR1019970704647A KR100300623B1 (ko) 1995-11-08 1996-11-08 아이리스 데이터 조합 시스템

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JP7/316141 1995-11-08
JP7316141A JPH09134430A (ja) 1995-11-08 1995-11-08 アイリスデータ照合システム

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WO1997017674A1 true WO1997017674A1 (fr) 1997-05-15

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KR100620628B1 (ko) * 2000-12-30 2006-09-13 주식회사 비즈모델라인 무선 통신 장치를 이용한 홍채인식시스템 및홍채인증시스템
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US7359531B2 (en) 2002-07-31 2008-04-15 Fujitsu Limited Processor with personal verification function and operating device
US7519198B2 (en) 2002-07-31 2009-04-14 Fujitsu Limited Processor with personal verification function and operating device

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KR19980701258A (ko) 1998-05-15
CN1168185A (zh) 1997-12-17
KR100300623B1 (ko) 2001-09-03
CN1116657C (zh) 2003-07-30
JPH09134430A (ja) 1997-05-20

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