IP Library Granted Patent US 11,176,356
Granted Patent B2
US 11,176,356 · App. 16/128,712 · Granted Nov 16, 2021

Face authentication device having database with small storage capacity

Inventor: Takayuki Kase (Tokyo, JP)
Assignee: NEC CORPORATION
G06K9/00255G06K9/00281G06K9/00288
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Quick Facts
Patent No.
US 11,176,356
App. No.
16/128,712
Granted
Nov 16, 2021
Kind
B2
Abstract

Face authentication can easily be performed based on an input image including a mirror region reflected by a mirror without increasing a storage capacity of a database. With the database, for each face of a person to be authenticated, only one real front image is to be registered as a reference face image. A mirror image processing circuitry detects the mirror region from the input image and to subject a detected mirror region to lateral inversion processing to produce a processed image. A face detection processing circuitry detects a face image from the processed image to generate a detected face image. A face authentication processing circuitry compares the detected face image with the reference face image, to thereby perform face authentication.

Claims (54)

1. A face authentication device, which is configured to perform face authentication based on an input image including a mirror region corresponding to a mirror and a frame mounted on the mirror,

the face authentication device comprising:

a memory storing instructions; and

one or more processors coupled to the memory, wherein the one or more processors are configured to execute the instructions to:

store, for a plurality of faces of persons to be authenticated, one real front image as a reference face image; and

perform face authentication processing from at least one of a plurality of directions,

wherein the one or more processors are further configured to execute the instructions to perform the face authentication processing from a first direction based on a detection of the mirror by:

retrieving a color of the frame mounted on the mirror from a storage;

detecting a region inside of the frame of the mirror based on the color of the frame as the mirror region in the input image and produce a mirror image from the detected mirror region;

performing lateral inversion processing on the mirror image to produce a processed image;

comparing the processed image with a portion of the reference face image corresponding to the mirror region; and

performing the face authentication from the first direction based on a match between the processed image and the reference face image, and outputting a face authentication result, and

wherein the one or more processors are further configured to execute the instructions to perform the face authentication processing from a second direction without using the mirror by:

detecting a subject in the input image without performing the lateral inversion processing; and

performing the face authentication from the second direction based on a match between the subject in the input image and the reference face image, and outputting a face authentication result from the second direction.

2. A face authentication device according to claim 1 , the one or more processors are further configured to execute the instructions to:

correct distortion of the mirror image to produce a corrected mirror image, wherein

the lateral inversion processing is executed on the corrected mirror image to produce the processed image.

3. A face authentication device according to claim 2 , wherein

correcting distortion of the mirror image is performed based on a predetermined correction parameter.

4. A face authentication device according to claim 1 , wherein the one or more processors are configured to execute the instructions to detect the inside of the frame of the mirror using a color of the frame as the mirror region in the input image.

5. A face authentication method for performing face authentication based on an input image including a mirror region corresponding to a mirror and a frame mounted on the mirror, the face authentication method comprising:

performing face authentication processing from at least one of a plurality of directions,

wherein the performing the face authentication processing comprises performing the face authentication processing from a first direction based on a detection of the mirror by:

retrieving a color of the frame mounted on the mirror from a storage;

detecting a region inside of the frame of the mirror based on the color of the frame as the mirror region in the input image and producing a mirror image from the detected mirror region;

performing lateral inversion processing to produce a processed image;

comparing the processed image with a portion of a reference face image corresponding to the mirror region, wherein the reference face image is one real front image for a plurality of faces of persons to be authenticated; and

performing the face authentication from the first direction based on a match between the processed image and the reference face image, and outputting a face authentication result,

wherein the performing the face authentication processing further comprises performing the face authentication processing from a second direction without using the mirror by:

detecting a subject in the input image without performing the lateral inversion processing; and

performing the face authentication from the second direction based on a match between the subject in the input image and the reference face image, and outputting a face authentication result from the second direction.

6. A face authentication method according to claim 5 , further comprising:

correcting distortion of the mirror image to produce a corrected mirror image, wherein

the lateral inversion processing is executed on the corrected mirror image to produce the processed image.

7. A face authentication method according to claim 6 , comprising:

correcting distortion of the mirror image is performed based on a predetermined correction parameter.

8. A face authentication method according to claim 5 , wherein the detecting is to detect the inside of the frame of the mirror using a color of the frame as the mirror region in the input image.

9. A non-transitory computer readable medium storing a face authentication program causing a computer to execute face authentication based on an input image including a mirror region corresponding to a mirror, the face authentication program causing the computer to execute a face authentication process comprising:

performing face authentication processing from at least one of a plurality of directions,

wherein the performing the face authentication processing comprises performing the face authentication processing from a first direction based on a detection of the mirror by:

retrieving a color of the frame mounted on the mirror from a storage;

detecting a region inside of the frame of the mirror based on the color of the frame as the mirror region in the input image and producing a mirror image;

performing the mirror image to lateral inversion processing to produce a processed image;

comparing the processed image with a portion of a reference face image corresponding to the mirror region, wherein the reference face image is one real front image for a plurality of faces of persons to be authenticated;

performing the face authentication from the first direction based on a match between the processed image and the reference face image, and outputting a face authentication result,

wherein the performing the face authentication processing further comprises performing the face authentication processing from a second direction without using the mirror by:

detecting a subject in the input image without performing the lateral inversion processing; and

performing the face authentication from the second direction based on a match between the subject in the input image and the reference face image, and outputting a face authentication result from the second direction.

10. The non-transitory computer readable medium according to claim 9 , the face authentication process further comprising:

correcting distortion of the mirror image to produce a corrected mirror image, wherein the lateral inversion processing is executed on the corrected mirror image to produce the processed image.

11. The non-transitory computer readable medium according to claim 10 , the face authentication process comprising:

correcting distortion of the mirror image is performed based on a predetermined correction parameter.

12. The non-transitory computer readable medium according to claim 9 , wherein the detecting is to detect the inside of the frame of the mirror using a color of the frame as the mirror region in the input image.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 12, 2018
From: KASE, TAKAYUKI
To: NEC CORPORATION
Reel/Frame 046848/0918 →
Priority Claims (1)
JP JP2017-060863 · Mar 27, 2017 · national
Continuity (2)
Continuation 15933723 · Mar 23, 2018
Related Publication 20190012523A1 · Jan 10, 2019
Cited By (1)
US 12,340,546