IP Library Granted Patent US 12,395,713
Granted Patent B2
US 12,395,713 · App. 18/221,203 · Granted Aug 19, 2025

Authentication system and authentication method

Inventor: Satoru Tanahashi (Osaka, JP)
Assignee: Panasonic Intellectual Property Management Co., Ltd.
H04N23/11G06V40/166G06V40/60H04N23/56H04N23/90
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Quick Facts
Patent No.
US 12,395,713
App. No.
18/221,203
Granted
Aug 19, 2025
Kind
B2
Abstract

An authentication system includes at least one illumination irradiating a person to be authenticated with invisible light, a first imaging device imaging the person to be authenticated irradiated with the invisible light, and an authentication device communicating with the first imaging device and executes authentication of the person to be authenticated based on a first invisible light image captured by the first imaging device. The illumination and the first imaging device are disposed at positions that are respectively asymmetric with respect to a line-of-sight position of the person to be authenticated guided by a line-of-sight guiding section that guides the line-of-sight position of the person to be authenticated.

Claims (53)

1. An authentication system, comprising:

at least one illumination that irradiates a person to be authenticated with invisible light;

a first imaging device that images the person to be authenticated and irradiated with the invisible light;

an authentication device that is capable of communicating with the first imaging device, and executes authentication of the person to be authenticated based on a first invisible light image captured by the first imaging device; and

a second imaging device that is capable of communicating with the authentication device, and receives surface-reflected light of the person to be authenticated and irradiated with the invisible light, wherein

the illumination and the first imaging device are disposed at positions that are respectively asymmetric with respect to a line-of-sight position of the person to be authenticated, the line-of-sight position of the person to be authenticated being guided by a monitor that guides the line-of-sight position of the person to be authenticated,

the monitor displays the first invisible light image,

the second imaging device transmits a second captured image obtained by imaging the person to be authenticated to the authentication device,

the authentication device outputs the second captured image to the monitor for display,

the second captured image is a second invisible light image,

the illumination emits the invisible light polarized in a first direction by a first polarizing plate, and

the second imaging device polarizes the surface-reflected light that is reflected by the person to be authenticated in a second direction substantially parallel to the first direction by a second polarizing plate, and receives the polarized invisible light to image the person to be authenticated.

2. The authentication system according to claim 1 , wherein

the monitor is provided in the illumination or the first imaging device.

3. The authentication system according to claim 1 , wherein

the first imaging device receives the invisible light polarized in a third direction substantially orthogonal to the first direction by a third polarizing plate to image the person to be authenticated.

4. The authentication system according to claim 1 , wherein

the illumination and the first imaging device are disposed at the positions that are respectively asymmetric with respect to a center position of a display region for displaying the first invisible light image by the monitor.

5. The authentication system according to claim 1 , wherein

the authentication device detects a face, of the person to be authenticated, appearing in the first invisible light image, generates a first frame indicating a position of the face, of the person to be authenticated, appearing in the first invisible light image based on positional information of the detected face of the person to be authenticated on the first invisible light image, superimposes the first frame on the first invisible light image, and outputs the first invisible light image superimposed with the first frame to the monitor for display.

6. The authentication system according to claim 5 , wherein

the illumination and the first imaging device are disposed at the positions that are respectively asymmetric with respect to a center position of the first frame superimposed on the first invisible light image.

7. The authentication system according to claim 1 , wherein

when the person to be authenticated is authenticated, the authentication device executes a predetermined operation set in advance, and

when the person to be authenticated is not authenticated, the authentication device outputs the first invisible light image to the monitor for display.

8. The authentication system according to claim 1 , wherein

the illumination, the first imaging device, and the second imaging device are disposed at positions that are respectively asymmetric with respect to a center position of a display region for displaying the second captured image by the monitor.

9. The authentication system according to claim 1 , wherein

the authentication device detects a face, of the person to be authenticated, appearing in the first invisible light image, generates a second frame indicating a position of the face, of the person to be authenticated, appearing in the second captured image based on positional information of the detected face of the person to be authenticated on the first invisible light image, superimposes the second frame on the second captured image, and outputs the second captured image superimposed with the second frame to the monitor for display.

10. The authentication system according to claim 9 , wherein

the illumination, the first imaging device, and the second imaging device are disposed at positions that are respectively asymmetric with respect to a center position of the second frame superimposed on the second captured image.

11. The authentication system according to claim 1 , wherein

the second imaging device includes a filter that transmits invisible light out of surface-reflected light that is reflected by the person to be authenticated, and receives the invisible light through the filter with an image sensor to image the person to be authenticated.

12. The authentication system according to claim 1 , wherein

when the person to be authenticated is authenticated, the authentication device executes a predetermined operation set in advance, and

when the person to be authenticated is not authenticated, the authentication device displays the second captured image on the monitor.

13. The authentication system according to claim 1 , wherein

the invisible light is near-infrared light with a wavelength of 940 nm.

14. An authentication method performed by an authentication system, the authentication system including:

at least one illumination that irradiates a person to be authenticated with invisible light;

a first imaging device that images the person to be authenticated, which is irradiated with the invisible light;

an authentication device that is capable of communicating with the first imaging device, and executes authentication of the person to be authenticated based on a first invisible light image captured by the first imaging device; and

a second imaging device that is capable of communicating with the authentication device, and receives surface-reflected light of the person to be authenticated and irradiated with the invisible light, wherein

the illumination and the first imaging device are disposed at positions that are respectively asymmetric with respect to a line-of-sight position of the person to be authenticated, the line-of-sight position of the person to be authenticated being guided by a monitor that guides the line-of-sight position of the person to be authenticated, the authentication method comprising:

imaging, by the first imaging device, the person to be authenticated and irradiated with the invisible light;

imaging, by the second imaging device, the person to be authenticated; and

authenticating, by the authentication device, the person to be authenticated based on the captured first invisible light image and the received surface-reflected light,

wherein the monitor displays the first invisible light image,

the second imaging device transmits a second captured image obtained by the imaging of the person to be authenticated to the authentication device,

the authentication device outputs the second captured image to the monitor for display,

the second captured image is a second invisible light image,

the illumination emits the invisible light polarized in a first direction by a first polarizing plate, and

the second imaging device polarizes the surface-reflected light that is reflected by the person to be authenticated in a second direction substantially parallel to the first direction by a second polarizing plate, and receives the polarized invisible light to image the person to be authenticated.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 7, 2023
From: TANAHASHI, SATORU
To: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.
Reel/Frame 065787/0150 →
Priority Claims (3)
JP 2022-112427 · Jul 13, 2022 · national
JP 2023-015557 · Feb 3, 2023 · national
JP 2023-026296 · Feb 22, 2023 · national
Continuity (1)
Related Publication 20240022799A1 · Jan 18, 2024
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