IP Library Granted Patent US 11,683,568
Granted Patent B2
US 11,683,568 · App. 17/799,233 · Granted Jun 20, 2023

Image capturing system, image processing program, and image processing method

Inventor: Takuhiro Shibuya (Tokyo, JP)
Assignee: Hitachi Kokusai Electric Inc.
H04N23/16H04N9/646H04N23/741H04N23/76
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Quick Facts
Patent No.
US 11,683,568
App. No.
17/799,233
Granted
Jun 20, 2023
Kind
B2
Abstract

The present invention provides a technique of reducing colored afterimages. To solve this problem, an image capturing system includes the following structure: A color separation optical system disperses subject light into a plurality of wavelength ranges, and forms images of a plurality of color components. A plurality of image capturing elements capture the respective images of the plurality of color components, and generate the respective color components of a video signal. A color-specific exposure setting unit sets respective exposure periods for the plurality of color components. An exposure control unit performs exposure control α of approximately simultaneously exposure-controlling each of the plurality of image capturing elements to obtain a video signal (hereafter referred to as a reference video signal) in a common period shorter than or equal to a shortest period of the respective exposure periods set for the color components. The exposure control unit also performs exposure control β of exposure-controlling each of the plurality of image capturing elements to obtain a video signal (hereafter referred to as an extended video signal) in a period obtained by subtracting the common period from an exposure period of a corresponding color component.

Claims (17)

1. An image capturing system comprising:

a color separation optical system that disperses subject light into a plurality of wavelength ranges, and forms images of a plurality of color components;

a plurality of image capturing elements that capture the respective images of the plurality of color components, and generate the respective color components of a video signal;

a color-specific exposure setting unit that sets respective exposure periods for the plurality of color components; and

an exposure control unit that performs exposure control a of approximately simultaneously exposure-controlling each of the plurality of image capturing elements to obtain a video signal, hereafter referred to as a reference video signal, in a common period shorter than or equal to a shortest period of the respective exposure periods set for the color components, and exposure control β of exposure-controlling each of the plurality of image capturing elements to obtain a video signal, hereafter referred to as an extended video signal, in a period obtained by subtracting the common period from an exposure period of a corresponding color component.

2. The image capturing system according to claim 1 , comprising

a color afterimage determination unit that compares the reference video signal and the extended video signal and determines a colored afterimage.

3. The image capturing system according to claim 2 , comprising

a mode switching unit that performs a low afterimage mode of generating an output image from the reference video signal in the case where the colored afterimage determined by the color afterimage determination unit is outside an acceptable range, and performs a range expansion mode of generating an output image from a result of synthesis of the reference video signal and the extended video signal in the case where the colored afterimage is within the acceptable range.

4. The image capturing system according to claim 3 , wherein the mode switching unit switches between the low afterimage mode and the range expansion mode in units of frames.

5. The image capturing system according to claim 3 , wherein the mode switching unit switches between the low afterimage mode and the range expansion mode in units of regions in a frame.

6. The image capturing system according to of claim 3 , wherein the color afterimage determination unit compares the reference video signal and the extended video signal for each of the color components, and determines the colored afterimage for each of the color components, and

wherein the mode switching unit switches between the low afterimage mode and the range expansion mode for each of the color components, based on the colored afterimage for each of the color components.

7. The image capturing system according to claim 3 , wherein the mode switching unit performs gain correction for each of the color components according to the low afterimage mode and the range expansion mode, to suppress a level change of the output image caused by mode switching.

8. An image processing method of acquiring the reference video signal and the extended video signal from the image capturing system according to claim 1 and processing the reference video signal and the extended video signal, the image processing method comprising:

a color afterimage determination step of comparing the reference video signal and the extended video signal and determining a colored afterimage; and

a mode switching step of performing a low afterimage mode of generating an output image from the reference video signal in the case where the colored afterimage determined in the color afterimage determination step is outside an acceptable range, and performing a range expansion mode of generating an output image from a result of synthesis of the reference video signal and the extended video signal in the case where the colored afterimage is within the acceptable range.

Assignments (3)
CHANGE OF ADDRESS Recorded May 15, 2025
From: HITACHI KOKUSAI ELECTRIC INC.
To: HITACHI KOKUSAI ELECTRIC INC.
Reel/Frame 071275/0058 →
CHANGE OF NAME Recorded May 15, 2025
From: HITACHI KOKUSAI ELECTRIC INC.
To: KOKUSAI DENKI ELECTRIC INC.
Reel/Frame 071275/0236 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 11, 2022
From: SHIBUYA, TAKUHIRO
To: HITACHI KOKUSAI ELECTRIC INC.
Reel/Frame 060789/0213 →
Continuity (1)
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