The present invention relates to an authentication card, an authentication system, a guidance method, and a program.
Currently, the authentication system using an IC card is utilized in various fields, and is employed for the system such as supervision over entry into and exit from work areas. As the authentication system using the IC card, there also exists the system for previously storing authentication information etc. in the IC card, and performing the authentication simply by holding up the IC card over a card reader; however, in recent years, the system has been proposed in which the IC card itself is provided with an authentication function in order to prevent unjust use of the IC card due to a loss and a robbery of the IC card (for example, Patent literature 1).
The technology of the Patent literature 1, which is provided with a sensor for inputting fingerprint information into an IC card main body, performs the collation with information within the IC card main body, and permits the use of the IC card on the basis of a collation result. Making a such a configuration makes it possible to prevent unjust use of the IC card due to a loss and a robbery of the IC card.
By the way, in recent years, not only the fingerprint authentication as described above but also face authentication of a user has been proposed.
However, there exists the problem that an image from which a feature quantity can be extracted is hardly obtained in a case of extracting the feature quantity from the image of a face acquired by an imaging means mounted on the IC card, differently from the case of the fingerprint etc. The reason is that a scope to be imaged cannot easily decided because a scope of the face, being a collation target, is large (in particular, a size of the face is larger than that of the IC card main body), differently from the case of the image of the fingerprint and the like.
In addition, in consideration of the fact that the user carries the IC card at any time (for example, the user carries the IC card at any time by hanging it around the neck by a strap), it is required that the IC card is light-weighted and is thin. Thus, an imaging unit etc. for capturing the face image cannot be increased in size, and thus, it should be avoided to install a zoom for, also when the scope to be imaged differs, adjusting it, a lens driving mechanism for focus adjustment, and the like.
Thereupon, the present invention has been accomplished in consideration of the above-mentioned problems, and an object of the present invention is to provide an authentication card for leading a to-be-authenticated person, an authentication system, a guidance method, and a program so that the image from which at least a feature quantity of the face of the to-be-authenticated person necessary for collation of authentication can be extracted can be captured.
The present invention is an authentication card, comprising: an imaging means that images a face of a to-be-authenticated person; and a guidance means that performs guidance of leading said to-be-authenticated person in such a manner that an image from which at least a feature quantity of the face of the to-be-authenticated person necessary for collation of authentication can be extracted can be captured by said imaging means.
The present invention is an authentication system for authenticating utilization of a specific system, comprising: an authentication card, comprising: an imaging means that images a face of a to-be-authenticated person; a guidance means that performs guidance of leading said to-be-authenticated person in such a manner that an image from which at least a feature quantity of the face of the to-be-authenticated person necessary for collation of authentication can be extracted can be captured by said imaging means; a user data storing means having the feature quantity of the face of a user of said specific system stored therein; a collation means that extracts the feature quantity from a face image of the to-be-authenticated person captured by said imaging means, collates the extracted feature quantity with the feature quantity of said user data storing means, and determines the authentication; and a face image data transmission means that transmits face image data of the authenticated to-be-authenticated person; and a recording means that records the face image data of said to-be-authenticated person.
The present invention is an authentication system for authenticating utilization of a specific system, comprising: an authentication card, comprising: an imaging means that images a face of a to-be-authenticated person; a guidance means that performs guidance of leading said to-be-authenticated person in such a manner that an image from which at least a feature quantity of the face of the to-be-authenticated person necessary for collation of authentication can be extracted can be captured by said imaging means; a user data storing means having the feature quantity of the face of a user of said specific system stored therein; and a collation means that extracts the feature quantity from a face image of the to-be-authenticated person captured by said imaging means, collates the extracted feature quantity with the feature quantity of said user data storing means, and transmits a collation time when authentication can be performed; and a means that receives said collation time, compares said collation time with the current time, and permits the authentication of said to-be-authenticated person when a difference thereof is within a predetermined range.
The present invention is an authentication system for authenticating utilization of a specific system, comprising: an authentication card, comprising: an imaging means that images a face of a to-be-authenticated person; a guidance means that performs guidance of leading said to-be-authenticated person in such a manner that an image from which at least a feature quantity of the face of the to-be-authenticated person necessary for collation of authentication can be extracted can be captured by said imaging means; and a feature quantity extraction means that extracts the feature quantity from a face image of the to-be-authenticated person captured by said imaging means, and transmits the extracted feature quantity; a user data storing means having the feature quantity of the face of a user of said specific system stored therein; and a collation means that receives the feature quantity of said to-be-authenticated person from said authentication card, collates the received feature quantity with the feature quantity of said user data storing means, and determines authentication.
The present invention is a guidance method of an authentication card having an imaging means that images a face of a to-be-authenticated person, comprising performing guidance of leading said to-be-authenticated person in such a manner that an image from which at least a feature quantity of the face of the to-be-authenticated person necessary for collation of authentication can be extracted can be captured by said imaging means.
The present invention is a program of an authentication card having an imaging means that images a face of a to-be-authenticated person, said program causing the authentication card to execute a guidance process of leading said to-be-authenticated person in such a manner that an image from which at least a feature quantity of the face of the to-be-authenticated person necessary for collation of authentication can be extracted can be captured by said imaging means.
The present invention makes it possible to lead the to-be-authenticated person in such a manner that the image from which at least the feature quantity of the face of the to-be-authenticated person necessary for the collation of authentication can be extracted can be captured.
Exemplary embodiments of the present invention will be explained by employing the accompanied drawings.
In
The IC card 1, which has a collation function within the card main body itself, transmits an authentication permission signal to the card reader 2 when the authentication succeeds as a result of collation of the user. Additionally, the details of a configuration and an operation of the IC card 1 will be later described.
The card reader 2 includes a date reception unit 21 and a gate on-off control unit 22. The date reception unit 21, upon receipt of the authentication permission signal from the IC card 1, transmits it to the gate on-off control unit 22. The gate on-off control unit 22, upon receipt of the authentication permission signal, transmits a gate release permission signal to the on-off gate 3.
The on-off gate 3, which is for opening/closing a gate mounted in the off-limits etc. dependent on the propriety of authentication, releases the gate when receiving the gate release permission signal.
Next, the IC card 1 will be explained in details.
The IC card 1 is an IC card provided with a collation function of performing the collation by the face of the user.
In
Continuously, a configuration of the IC card 1 will be explained.
As shown in
The imaging unit 100, which is an imaging unit for capturing the image of the face of the to-be-authenticated person, is configured of an image sensor such as CCD and CMOS, a control system, a lens optical system for focusing the image of the face in the image sensor, and the like. Additionally, in consideration of the fact that the user carries the IC card 1 at any time (for example, the user carries the IC card 1 at any time by hanging it around the neck with a strap), it is required that the IC card 1 is light-weighted and is thin. Thus, a fixed-focus lens having no lens driving function for zoom and focus adjustment is preferably employed as the imaging unit 100.
The guidance control unit 101 is a control unit for controlling the guidance for imaging the face for collation by switching on the startup switch 104. As described above, preferably, the imaging unit 100 has no lens driving function. Thus, with the case of the fixed-focus lens, it is necessary that the to-be-authenticated person moves the IC card 1 or the to-be-authenticated person itself moves at a position in which the image having a degree to which the face of the to-be-authenticated person can be collated (the image having a degree to which at least the feature quantity can be extracted) can be acquired because the pint adjustment and the zoom (expansion/reduction) cannot be optically performed. Thereupon, the guidance control unit 101 performs the guidance such that the to-be-authenticated person is led at a position in which the image having a degree to which the feature quantity of the face of the to-be-authenticated person necessary for the collation can be obtained can acquired by the imaging unit 100. And, when the image obtained by the imaging unit 100 is an image having a degree to which the collation of the face of the to-be-authenticated person can be performed, the guidance control unit 101 outputs data of the above face image to the collation processing unit 102.
Specifically, when it is assumed that the size of the face image of the to-be-authenticated person captured by the imaging unit 100, which has a degree to which the feature quantity of the face of the to-be-authenticated person necessary for the collation can be obtained, is a size of a circle formed by a broken line in
Further, it is not limited only to the size of the face image to be captured to notify the effect that the imaging environment is not suitable, and the guidance control unit 101 may notify the effect that the imaging environment is not suitable for capturing the face image by flashing the guidance lamps 12a and 12b also when the captured image is not suitable for the collation process (when the feature quantity of the face image cannot be obtained), for example, when the captured image is extremely dark and when the captured image is extremely light, judging from luminance information of an entirety of the captured image (for example, by flashing the guidance lamp 12a when the part of the face of the captured image is extremely dark, and by flashing the guidance lamp 12b when it is extremely light). In this case, the to-be-authenticated person results in moving to a different position according to the guidance of the guidance lamps 12a and 12b, and performing the collation process again.
The collation processing unit 102 receives the face image data from the guidance control unit 101, and extracts the feature quantity from the face image data. And, the collation processing unit 102 collates the extracted feature quantity of the to-be-authenticated person with the feature quantity of the user stored in the user data storing unit 103. The collation processing unit 102 outputs an authentication permission signal indicating an authentication permission to the transmission unit 105 when the feature quantities coincide with each other as a result of the collation and it can be authenticated that the to-be-authenticated person is a regular user. On the other hand, the collation processing unit 102 notifies the effect that it cannot be authenticated that the to-be-authenticated person is a regular user by flashing the guidance lamps 12a and 12b via the guidance control unit 101, and the like when the feature quantities do not coincide with each other and it cannot be authenticated that the to-be-authenticated person is a regular user.
Additionally, the feature quantity of the user stored in the user data storing unit 103 is not limited to the feature quantity of one user (for example, a regular user of the IC card 1). For example, the user data storing unit 103 may be caused to previously store the feature quantity of the face of a guest in a case in which the authentication service is temporarily required due to the guest's coming, and the like. That is, the relation could be not only a one-to-one relation, namely a relation of the feature quantity of one person to one IC card 1, but also a one-to-many relation.
The transmission unit 105, upon receipt of the permission signal from the collation processing unit 102, outputs the authentication permission signal to the data reception unit 21 of the card reader 2.
Next, an operation of the first exemplary embodiment will be explained.
Each of
At first, a holder of the IC card 1 pushes down the startup switch 104 so as to obtain the authentication permission (Step 100).
When the startup switch 104 is pushed down, the collation process is started, and the guidance control unit 101 flashes the guidance lamps 12a and 12b at a slow flashing interval, and urges the to-be-authenticated person for the photography (Step 101).
And, when the to-be-authenticated person turns its face to the lens 11 of the IC card 1 and the imaging is started, the guidance control unit 101 compares the size of the face image obtained from the imaging unit 100 with a predetermined size (Step 102).
When the size of the face image to be obtained from the imaging unit 100 is almost equal to a predetermined size as a result of the comparison (Step 103), the guidance control unit 101 lights both of the guidance lamps 12a and 12b (Step 104). And, the guidance control unit 101 outputs the image data of the face imaged at the above position to the collation processing unit 102 (Step 105).
On the other hand, when the size of the face image to be obtained from the imaging unit 100 is smaller than a predetermined size (Step 106) as a result of the comparison (Step 103), the guidance control unit 101 lights the guidance lamps 12a (Step 107) so as to notify the effect that the IC card 1 should be approached to the to-be-authenticated person. And, the operation returns to the step 102.
On the other hand, when the size of the face image to be obtained from the imaging unit 100 is larger than a predetermined size (Step 106) as a result of the comparison, the guidance control unit 101 lights the guidance lamps 12b (Step 108) so as to notify the effect that the IC card 1 should be kept away from the to-be-authenticated person. And, the operation returns to the step 102.
The collation processing unit 102 receives the face image data from the guidance control unit 101, and extracts the feature quantity from the face image data (Step 109). And, the collation processing unit 102 collates the extracted feature quantity of the to-be-authenticated person with the feature quantity of the user stored in the user data storing unit 103 (Step 110).
The collation processing unit 102 outputs an authentication permission signal indicating an authentication permission to the transmission unit 105 (Step 112) when the feature quantities coincide with each other as a result of the collation (Step 111) and it can be authenticated that the to-be-authenticated person is a regular user. On the other hand, the collation processing unit 102 flashes the guidance lamps 12a and 12b (Step 113) when the feature quantities do not coincide with each other and it cannot be authenticated that the to-be-authenticated person is a regular user, and the operation returns to the Step 102.
The transmission unit 105, upon receipt of the authentication permission signal from the collation processing unit 102, outputs the authentication permission signal to the data reception unit 21 of the card reader 2 (Step 114).
The data reception unit 21 of the card reader 2 having received the authentication permission signal outputs the authentication permission signal to the gate on-off control unit 22 (Step 115).
The gate on-off control unit 22 having received the authentication permission signal transmits a gate release signal to the on-off gate 3 (Step 116).
The on-off gate 3 having received the gate release signal releases the gate (Step 117).
As mentioned above, the first exemplary embodiment, which is provided with the guidance control unit for leading the card and the to-be-authenticated person at a position in which the image necessary for the collation can be captured in the card having the collation function, makes it possible to capture the image necessary for the image collation without inflicting a burden on the to-be-authenticated person.
Further, the imaging unit does not need a function of optically performing the focus adjustment and the zoom (expansion/reduction) because the first exemplary embodiment performs the guidance for leading the card and the to-be-authenticated person at a position in which the image necessary for the collation can be captured, thereby making it possible to make the thickness of the card whereby thin, and to make the weight thereof light.
Additionally, the guidance was performed by lighting and flashing the guide lamps in the above-described first exemplary embodiment; however the guidance is not limited hereto. For example, the guidance lamps having a different luminescent color may be prepared to perform the guidance with the differentiated color. Further, the number of the guidance lamps is not limited, and the number may be increased/decreased without departing from the spirit and scope of the present invention.
In addition, the guidance means is not limited to the light emitter, and a voice, a display, and the like may be used as the guidance means. For example, as shown in
In addition, as shown in
In addition, it is also thinkable to illegally use the IC card 1 when a lapse of the time from the authentication to the transmission to the card reader 2 is long or the like even though the collation of the face image is suitable and the authentication has been obtained in the IC card 1. For example, the case of intimidating the regular user of the IC card 1 into the collation by use of the face image of the regular user in a location away from the card reader 2, and illegally entering into facilities etc. within the gate, and the like are thinkable. In consideration of such a case, the collation processing unit 102 or the transmission unit 105 may be adapted to stop the transmission of the authentication permission signal when a predetermined time (for example, 30 seconds) elapses.
In the second exemplary embodiment, an example of recording a log of the authentication will be explained. Additionally, a point in which the second exemplary embodiment differs from the above-described exemplary embodiment is mainly explained.
A point in which the second exemplary embodiment differs from the first exemplary embodiment is that a server 4 for sampling the log and a log recording unit 5 in which the log is recorded are mounted.
Further, in the second exemplary embodiment, the IC card 1 transmits to the card reader 2 an identification number assigned to the IC card 1 and the face image data of the to-be-authenticated person that has been utilized for the collation in order to obtain the authentication permission, together with the authentication permission signal.
The data reception unit 21 of the card reader 2, upon receipt of the authentication permission signal, the identification number of the IC card 1, and the face image data of the to-be-authenticated person, outputs the authentication permission signal to the gate on-off control unit 22, and outputs the identification number of the IC card 1 and the face image data of the to-be-authenticated person to the server 4.
The server 4 receives the identification number of the IC card 1 and the face image data of the to-be-authenticated person coming from the card reader 2, and records the identification number of the IC card 1 and the face image data of the to-be-authenticated person received from the card reader 2 together with reception times thereof as the log in the log recording unit 5.
The log at the time of the collation is recoded in the second exemplary embodiment, whereby also when the entry record etc. needs to be confirmed later, it can be collated from the record of the log. In particular, the person who entered can be determined with its face because the data of the face image is recorded together with the identification number of the IC card 1.
Additionally, the things to be recorded in the log are not limited to the identification number of the IC card 1, the face image data of the to-be-authenticated person, and the reception time.
The third exemplary embodiment will be explained. Additionally, a point in which the third exemplary embodiment differs from the above-described exemplary embodiments is mainly explained.
It is also thinkable to illegally use the IC card 1 when a lapse of the time from the authentication to the transmission to the card reader 2 is long or the like even though the collation of the face image is suitable and the authentication has been obtained in the IC card 1. For example, the case of intimidating the regular user of the IC card 1 into the collation by use of the face image of the regular user in a location away from the card reader 2, and illegally entering into facilities etc. within the gate, and the like are thinkable.
In consideration of the above-mentioned circumstances, an example of also incorporating the collation time as a target of the authentication in addition to the collation of the face image will be explained in the third exemplary embodiment.
In the third exemplary embodiment, the collation processing unit 102 of the IC card 1 measures the time, and transmits the authentication time and the authentication permission signal to the transmission unit 105 when the authentication has been obtained. The transmission unit 105 transmits the authentication time and the authentication permission signal to the card reader 2.
The data reception unit 21 of the card reader 2, upon receipt of the authentication permission signal and the collation time, transmits the authentication permission signal and the authentication time to the server 4.
An authentication time confirmation unit 40 of the server 4 compares the authentication time with the current time, and transmits the authentication permission signal to the gate on-off control unit 22 of the card reader 2 when a difference thereof is a time within a predetermined range (for example, 30 seconds).
The gate on-off control unit 22 of the card reader 2 having received the authentication permission signal transits the gate release signal to the on-off gate 3.
The on-off gate 3 having received the gate release signal releases the gate.
The third exemplary embodiment compares the authentication time with the current time in addition to the authentication of the face image, whereby such an illegal action of illegally performing the collation with the IC card and trying to enter into facilities etc. within the gate can be prevented.
The fourth exemplary embodiment will be explained. Additionally, a point in which the fourth exemplary embodiment differs from the above-described exemplary embodiments is mainly explained.
An example of performing the collation process of the face image with the IC card 1 was explained in the above-described first exemplary embodiment to the third exemplary embodiment.
An example of extracting only the feature quantity of the face image in the IC card 1 and performing the collation/authentication in the server 4 side will be explained in the fourth exemplary embodiment.
As shown in
The data reception unit 21 of the card reader 2, upon receipt of the feature quantity, transmits this feature quantity to the server 4.
The server 4 includes an authentication processing unit 41 and a user data storing unit 42.
The authentication processing unit 41 receives the feature quantity from the data reception unit 21 of the card reader 2, and collates this feature quantity with the feature quantity stored in the user data storing unit 42. Additionally, a configuration can be also made so that the identification information of the IC card 1 and the feature quantity are previously stored correspondingly to each other in the user data storing unit 42, the identification information of the IC card 1 is acquired from the IC card 1 together with the feature quantity of the to-be-authenticated person. In this case, it is enough for the authentication processing unit 41 to acquire the feature quantity corresponding to the received identification information from the user data storing unit 42 and to collate this feature quantity with the received feature quantity of the to-be-authenticated person, whereby a processing burden can be alleviated.
When the feature quantities coincide with each other as a result of the collation and it can be authenticated that the to-be-authenticated person is a regular user, the authentication processing unit 41 transmits the authentication permission signal indicating the authentication permission to the gate on-off control unit 22 of the card reader 2.
The gate on-off control unit 22 of the card reader 2 having received the authentication permission signal transmits the gate release signal to the on-off gate 3.
The on-off gate 3 having received the gate release signal releases the gate.
A configuration was made so that the authentication process was performed by the server in the fourth exemplary embodiment, whereby the processing burden in the IC card 1 is alleviated.
Additionally, an example of the IC card with portability employed at the moment that the user disclosed its identity was explained in the above-described first to fourth exemplary embodiments; however, the authentication device is not limited to the card. The present invention is applicable to the portable-type authentication device having a certain thickness without departing from the spirit and scope of the present invention.
Further, as apparent from the above-mentioned explanation, each unit can be configured with hardware; however, it can be also realized with a computer program. In this case, functions and operations similar to the functions and the operations of the above-described each exemplary embodiment are realized by a processor that operates under a program stored in a program memory. Additionally, only one part of the functions of the above-described exemplary embodiments can be realized with the computer program.
Further, the content of the above-mentioned exemplary embodiments can be expressed as follows.
(Supplementary note 1) An authentication card, comprising:
an imaging means that images a face of a to-be-authenticated person; and
a guidance means that performs guidance of leading said to-be-authenticated person in such a manner that an image from which at least a feature quantity of the face of the to-be-authenticated person necessary for collation of authentication can be extracted can be captured by said imaging means.
(Supplementary note 2) The authentication card according to Supplementary note 1, wherein said guidance means guides said to-be-authenticated person so as to lead the authentication card at a position in which the image from which at least the feature quantity of the face of the to-be-authenticated person necessary for the collation of the authentication can be extracted can be captured by said imaging means.
(Supplementary note 3) The authentication card according to Supplementary note 1 or Supplementary note 2:
wherein said guidance means includes at least one light emitter or more; and
wherein said guidance means performs the guidance by lighting and flashing of said light emitter, and one luminescent color or a combination thereof.
(Supplementary note 4) The authentication card according to Supplementary note 1 or Supplementary note 2:
wherein said guidance means includes a display means that displays a template for deciding a face position; and
wherein said guidance means performs the guidance by displaying said template and the face of the to-be-authenticated person to be imaged by said imaging means on said display means.
(Supplementary note 5) The authentication card according to one of Supplementary note 1 to Supplementary note 4, comprising:
a user data storing means having the feature quantity of the face of a user of a specific system stored therein; and
a collation means that extracts the feature quantity from a face image of the to-be-authenticated person captured by said imaging means, collates the extracted feature quantity with the feature quantity of said user data storing means, and determines the authentication.
(Supplementary note 6) The authentication card according to Supplementary note 5, comprising a face image data transmission means that transmits face image data of the authenticated to-be-authenticated person to a reader that reads date of the authentication card.
(Supplementary note 7) The authentication card according to Supplementary note 5 or Supplementary note 6, wherein said collation means does not transmit an authentication permission signal to the reader that reads date of the authentication card when a predetermined time elapses after authenticating said to-be-authenticated person.
(Supplementary note 8) The authentication card according to one of Supplementary note 1 to Supplementary note 4, comprising a feature quantity extraction means that extracts the feature quantity from the face image of the to-be-authenticated person captured by said imaging means, and transmits the extracted feature quantity to the reader that reads date of the authentication card.
(Supplementary note 9) An authentication system for authenticating utilization of a specific system, comprising:
an authentication card, comprising:
a recording means that records the face image data of said to-be-authenticated person.
(Supplementary note 10) An authentication system for authenticating utilization of a specific system, comprising:
an authentication card, comprising:
a means that receives said collation time, compares said collation time with the current time, and permits the authentication of said to-be-authenticated person when a difference thereof is within a predetermined range.
(Supplementary note 11) An authentication system for authenticating utilization of a specific system, comprising:
an authentication card, comprising:
a user data storing means having the feature quantity of the face of a user of said specific system stored therein; and
a collation means that receives the feature quantity of said to-be-authenticated person from said authentication card, collates the received feature quantity with the feature quantity of said user data storing means, and determines authentication.
(Supplementary note 12) A guidance method of an authentication card having an imaging means that images a face of a to-be-authenticated person, comprising performing guidance of leading said to-be-authenticated person in such a manner that an image from which at least a feature quantity of the face of the to-be-authenticated person necessary for collation of authentication can be extracted can be captured by said imaging means.
(Supplementary note 13) A program of an authentication card having an imaging means that images a face of a to-be-authenticated person, said program causing the authentication card to execute a guidance process of leading said to-be-authenticated person in such a manner that an image from which at least a feature quantity of the face of the to-be-authenticated person necessary for collation of authentication can be extracted can be captured by said imaging means.
Above, although the present invention has been particularly described with reference to the preferred embodiments, it should be readily apparent to those of ordinary skill in the art that the present invention is not always limited to the above-mentioned embodiments, and changes and modifications in the form and details may be made without departing from the spirit and scope of the invention.
This application is based upon and claims the benefit of priority from Japanese patent application No. 2010-283423, filed on Dec. 20, 2010 the disclosure of which is incorporated herein in its entirety by reference.
Number | Date | Country | Kind |
---|---|---|---|
2010283423 | Dec 2010 | JP | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
---|---|---|---|---|
PCT/JP2011/079556 | 12/20/2011 | WO | 00 | 6/19/2013 |