IP Library Granted Patent US 11,758,283
Granted Patent B2
US 11,758,283 · App. 17/491,286 · Granted Sep 12, 2023

Image capture device and image adjusting method

Inventors: Toshinobu Hatano (Kanagawa, JP); Tetsuya Makita (Kanagawa, JP)
Assignee: Panasonic Intellectual Property Management Co., Ltd.
H04N23/76H04N23/71H04N23/73
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Quick Facts
Patent No.
US 11,758,283
App. No.
17/491,286
Granted
Sep 12, 2023
Kind
B2
Abstract

An image capture device of the present invention is provided with: a first brightness adjusting unit which adjusts brightness when capturing an image of a subject; a second brightness adjusting unit which adjusts the brightness of an analog image signal of the subject captured with the brightness adjusted by the first brightness adjusting unit; an A/D conversion unit which subjects the analog image signal with the brightness adjusted by the second brightness adjusting unit to A/D conversion; a third brightness adjusting unit which adjusts the brightness of a digital image signal obtained by the A/D conversion; and a gain-up adjusting unit which raises the gain of a low-illuminance portion of the digital image signal with the brightness adjusted by the third brightness adjusting unit, by means of realtime modification adjustment using a gamma characteristic.

Claims (48)

1. An image capture apparatus, comprising:

at least one processor that, in operation, performs:

a first brightness adjustment that adjusts brightness during capture of an image of an object;

a second brightness adjustment that adjusts brightness of an analog image signal of the object captured with the brightness adjusted by the first brightness adjustment;

an analog/digital (A/D) conversion on the analog image signal having the brightness adjusted by the second brightness adjustment;

a third brightness adjustment that adjusts brightness of a digital image signal on which the A/D conversion has been performed; and

a gain-up adjustment that increases, by real-time change adjustment using a gamma characteristic, a digital gain for a low illuminance portion of the digital image signal for which the brightness has been adjusted by the third brightness adjustment,

wherein:

the first brightness adjustment is an exposure time adjustment that adjusts exposure time,

the second brightness adjustment is an analog gain adjustment that adjusts an output amplitude of the analog image signal,

the third brightness adjustment is a digital gain adjustment that adjusts an output amplitude of the digital image signal, and

when the first brightness adjustment, the second brightness adjustment, or the third brightness adjustment is performed, the at least one processor sets a brightness point at which a gain coefficient α starts to change by adjusting a value of the digital gain from a maximum value to any reduced value in order to adjust a brightness level at which the real-time change adjustment using the gamma characteristic with respect to brightness of the object is started.

2. The image capture apparatus according to claim 1 , wherein

in a low illuminance state where the digital gain of the digital image signal is in a vicinity of a maximum value, the at least one processor increases the digital gain for the low illuminance portion using an intermediate characteristic resulting from mixture processing that mixes two or more gamma characteristics by the gain-up adjustment.

3. The image capture apparatus according to claim 2 , wherein,

when increasing the digital gain for the low illuminance portion using the intermediate characteristic resulting from the mixture processing that mixes the two or more gamma characteristics, the at least one processor adjusts a value of a by letting two or more gain coefficients have a relation of α and (1−α), wherein α is between 0 and 1 with respect to a configuration of results of the two or more gamma characteristics that are multiplied respectively by gains and are then added together by the gain-up adjustment.

4. The image capture apparatus according to claim 3 , wherein,

when the value of a is adjusted by letting the two or more gain coefficients have the relation of α and (1−α), wherein α is between 0 and 1, the at least one processor automatically adjusts the value of α in real time by correlating the value of α with a value of a luminance level obtained in photometric detection processing.

5. The image capture apparatus according to claim 4 , wherein,

when the value of a is automatically adjusted in real time by correlating the value of α with the value of the luminance level obtained in the photometric detection processing, the at least one processor sets the two or more gain coefficients such that the gain coefficient α=1 holds true with respect to a value of a target luminance level, a gradually decreases as the target luminance level decreases, and the gain coefficient α=0 holds true with respect to any set minimum value.

6. The image capture apparatus according to claim 2 , wherein

the two or more gamma characteristics are settable to any setting.

7. The image capture apparatus according to claim 1 , wherein

the at least one processor performs the second brightness adjustment and the A/D conversion by setting adjustment values respectively to two different values, and simultaneously outputs, in parallel, two types of image signals having different brightness,

and performs combination processing that combines the two types of image signals.

8. The image capture apparatus according to claim 7 , wherein

the at least one processor adjusts an input signal of composite image data combined by the combination processing such that a maximum value of the input signal matches a maximum value of an input signal data range, and performs the third brightness adjustment by using the input signal adjusted.

9. An image adjustment method, comprising:

performing a first brightness adjustment by adjusting brightness during capture of an image of an object;

performing a second brightness adjustment by adjusting brightness of an analog image signal of the object captured with the brightness adjusted by the first brightness adjustment;

performing analog/digital (A/D) conversion on the analog image signal having the brightness adjusted by the second brightness adjustment;

performing a third brightness adjustment by adjusting brightness of a digital image signal on which the A/D conversion has been performed; and

performing a gain-up adjustment by increasing, by real-time change adjustment using a gamma characteristic, a digital gain for a low illuminance portion of the digital image signal for which the brightness has been adjusted by the third brightness adjustment;

wherein:

the first brightness adjustment includes adjusting an exposure time,

the second brightness adjustment includes adjusting an output amplitude of the analog image signal,

the third brightness adjustment includes adjusting an output amplitude of the digital image signal, and

when the first brightness adjustment, the second brightness adjustment, or the third brightness adjustment is performed, a brightness point at which a gain coefficient α starts to change is set by adjusting a value of the digital gain from a maximum value to any reduced value in order to adjust a brightness level at which the real-time change adjustment using the gamma characteristic with respect to brightness of the object is started.

10. An image capture apparatus, comprising:

at least one processor that, in operation, performs:

a first brightness adjustment that adjusts brightness during capture of an image of an object;

a second brightness adjustment that adjusts brightness of an analog image signal of the object captured with the brightness adjusted in the first brightness adjustment;

an analog/digital (A/D) conversion on the analog image signal having the brightness adjusted in the second brightness adjustment;

a third brightness adjustment that adjusts brightness of a digital image signal on which the A/D conversion has been performed; and

a gain-up adjustment that increases, by real-time change adjustment using a gamma characteristic, a gain for a low illuminance portion of the digital image signal for which the brightness has been adjusted in the third brightness adjustment,

wherein:

the at least one processor performs the second brightness adjustment and the A/D conversion by setting adjustment values respectively to two different values, and simultaneously outputs, in parallel, two types of image signals having different brightness,

and performs combination processing that combines the two types of image signals.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 28, 2024
From: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.
To: PANASONIC AUTOMOTIVE SYSTEMS CO., LTD.
Reel/Frame 066703/0245 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 8, 2023
From: HATANO, TOSHINOBU; MAKITA, TETSUYA
To: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.
Reel/Frame 063889/0343 →