IP Library › Granted Patent US 12,513,283
Granted Patent B2
US 12,513,283 · App. 18/664,810 · Granted Dec 30, 2025

Camera unit calibrating apparatus and calibrating method

Inventor: Akitaka Oko (Tokyo, JP)
Assignee: SUBARU CORPORATION
H04N17/002G02B26/0875G06T7/85G06T2207/10012
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Quick Facts
Patent No.
US 12,513,283
App. No.
18/664,810
Granted
Dec 30, 2025
Kind
B2
Abstract

A camera unit calibrating apparatus performs a predetermined measurement based on images acquired by imaging the same object from different viewpoints using cameras. The apparatus includes a collimator unit and a control unit that controls the collimator unit. The collimator unit includes collimators corresponding to the cameras respectively, collimator driving devices corresponding to the collimators respectively, a support unit that supports the collimators to allow the collimators to be translated individually within a predetermined plane, and a collimator control unit that controls the collimators and the collimator driving devices. The control unit controls each of the collimator driving devices to individually set a corresponding one of the collimators to a predetermined position and orientation, and cause each of collimated images produced by the collimators to be formed at a desired position within a range of an imaging area of a corresponding one of the cameras.

Claims (24)

1 . A camera unit calibrating apparatus configured to be applied to a camera unit and to perform a predetermined measurement based on images acquired by imaging the same object from different viewpoints by using cameras of the camera unit, the camera unit calibrating apparatus comprising:

a collimator unit comprising collimators corresponding to the cameras respectively, collimator driving devices corresponding to the collimators respectively, a support unit configured to support the collimators in such a way as to allow the collimators to be translated individually within a predetermined plane, and a collimator control unit configured to control the collimators and the collimator driving devices; and

a control unit configured to control the collimator unit, wherein

the control unit is configured to control each of the collimator driving devices to individually set a corresponding one of the collimators to a predetermined position and orientation, and

the control unit is configured to cause each of collimated images produced by the collimators to be formed at a desired position within a range of an imaging area of a corresponding one of the cameras.

2 . The camera unit calibrating apparatus according to claim 1 , wherein optical axes of collimated beams from the collimators are set non-parallel to optical axes of the cameras.

3 . The camera unit calibrating apparatus according to claim 1 , wherein the control unit is configured further to:

determine, based on setting information of the collimators, an assumed imaging coordinate of each of the collimated images in a corresponding one of reference images, and calculate image shifts in the assumed imaging coordinates;

estimate an actual imaging coordinate of each of the collimated images formed in the imaging area of the corresponding one of the cameras, and calculate an image shift in the actual imaging coordinate;

perform a calibration process that compares the image shift in the assumed imaging coordinate with the image shift in the actual imaging coordinate; and

perform an image correction process that corrects a geometric distortion in an actual image to make the image shift in the actual imaging coordinate equal to the image shift in the assumed imaging coordinate.

4 . The camera unit calibrating apparatus according to claim 1 , wherein the camera unit is a stereo camera unit.

5 . A camera unit calibrating method for performing a predetermined measurement based on images acquired by imaging the same object from different viewpoints by using cameras of a camera unit, the camera unit calibrating method comprising:

controlling each of collimator driving devices to individually set a corresponding one of collimators to a predetermined position and orientation;

causing each of collimated images produced by the collimators to be formed at a desired position within a range of an imaging area of a corresponding one of the cameras;

determining, based on setting information of the collimators, an assumed imaging coordinate of each of the collimated images in a corresponding one of reference images, and calculating image shifts in the assumed imaging coordinates;

estimating an actual imaging coordinate of each of the collimated images formed in the imaging area of the corresponding one of the cameras, and calculating an image shift in the actual imaging coordinate;

performing a calibration process that compares an image shift in the assumed imaging coordinate with the image shift in the actual imaging coordinate; and

performing an image correction process that corrects a geometric distortion in an actual image to make the image shift in the actual imaging coordinate equal to the image shift in the assumed imaging coordinate.

6 . A camera unit calibrating apparatus configured to be applied to a camera unit and to perform a predetermined measurement based on images acquired by imaging the same object from different viewpoints by using cameras of the camera unit, the camera unit calibrating apparatus comprising:

a collimator unit comprising collimators corresponding to the cameras respectively, collimator driving devices corresponding to the collimators respectively, and a support unit configured to support the collimators in such a way as to allow the collimators to be translated individually within a predetermined plane; and

circuitry configured to control the collimator unit, wherein

the circuitry is configured to control each of the collimator driving devices to individually set a corresponding one of the collimators to a predetermined position and orientation, and

the circuitry is configured to cause each of collimated images produced by the collimators to be formed at a desired position within a range of an imaging area of a corresponding one of the cameras.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 15, 2024
From: OKO, AKITAKA
To: SUBARU CORPORATION
Reel/Frame 067421/0729 →
Priority Claims (1)
JP 2023-083896 · May 22, 2023 · national
Continuity (1)
Related Publication 20240397035A1 · Nov 28, 2024
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