IP Library › Granted Patent US 12,567,133
Granted Patent B2
US 12,567,133 · App. 18/513,729 · Granted Mar 3, 2026

Audiovisual system with shared image-processing procedure and method for processing video therein

Inventors: Chia-Wei Yu (Hsinchu, TW); Hsin-Ying Ou (Hsinchu, TW)
Assignee: REALTEK SEMICONDUCTOR CORP.
G06T5/92H04N7/01H04N9/67G06T2207/10016G06T2207/20208
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Quick Facts
Patent No.
US 12,567,133
App. No.
18/513,729
Granted
Mar 3, 2026
Kind
B2
Abstract

An audiovisual system with a shared image-processing procedure and a method for processing video therein are provided. The audiovisual system performs the image-processing procedure on a specific format video for optimizing images of the video. If a video format is not supported by the image-processing procedure in the audiovisual system, the video is converted to a video format supported by the audiovisual system. Various videos of different formats can accordingly share the same image-processing procedure. In the method, a first format conversion procedure is performed for converting a received second format video to a first format video that is supported by the image-processing procedure performed in the audiovisual system. The first format video can then be processed by the audiovisual system. It is determined if one more format conversion is required according to the format supported by a display at an output end of the audiovisual system.

Claims (57)

1 . A method for processing a video, applied to an audiovisual system, comprising:

receiving the video, and determining whether format conversion should be performed by identifying whether the video is a first format video or a second format video; and

performing a first format conversion procedure to convert the second format video into the first format video that is supported by an image-processing procedure performed in the audiovisual system when the video is determined to be the second format video, or directly performing the image-processing procedure on the video when the video is determined to be the first format video, and outputting the first format video that has undergone the image-processing procedure;

wherein, when a terminal display device connected to an output end of the audiovisual system supports the second format video, the first format video that has undergone the image-processing procedure is again converted to the second format video that is configured to be outputted to the terminal display device by performing a second format conversion procedure;

wherein the image-processing procedure that allows the audiovisual system to support processing both the first format video and the second format video comprises steps of:

statistically analyzing image features of the first format video; and

performing one or more image-processing processes including noise reduction, image sharpening, saturation adjustment, and contrast and hue adjustment on the first format video.

2 . The method according to claim 1 , wherein the first format conversion procedure includes:

frame-by-frame converting the received second format video from a first color space to a second color space;

performing an electro-optical transfer procedure on the second format video in the second color space for transferring the second format video into visible light signals;

performing a color gamut conversion for converting the second format video in the second color space to the first format video;

performing an optical-electro transfer procedure on the first format video in the second color space for gamma correction; and

frame-by-frame converting the first format video that has undergone the gamma correction from the second color space to the first color space, and outputting the first format video in the first color space to the image-processing procedure.

3 . The method according to claim 1 , wherein processing parameters applied to the image-processing procedure performed in the audiovisual system are modulated for the first format video so as to optimize the video outputted to the terminal display device.

4 . The method according to claim 3 , wherein the first format conversion procedure includes:

frame-by-frame converting the received second format video from a first color space to a second color space;

performing an electro-optical transfer procedure on the second format video in the second color space for transferring the second format video into visible light signals;

performing a color gamut conversion for converting the second format video in the second color space to the first format video;

performing an optical-electro transfer procedure on the first format video in the second color space for gamma correction; and

frame-by-frame converting the first format video that has undergone the gamma correction from the second color space to the first color space, and outputting the first format video in the first color space to the image-processing procedure.

5 . The method according to claim 1 , wherein the first format video supported by the image-processing procedure performed in the audiovisual system is a standard dynamic range video, and the second format video is a high dynamic range video.

6 . The method according to claim 5 , wherein the first format conversion procedure includes:

frame-by-frame converting the received second format video from a first color space to a second color space;

performing an electro-optical transfer procedure on the second format video in the second color space for transferring the second format video into visible light signals;

performing a color gamut conversion for converting the second format video in the second color space to the first format video;

performing an optical-electro transfer procedure on the first format video in the second color space for gamma correction; and

frame-by-frame converting the first format video that has undergone the gamma correction from the second color space to the first color space, and outputting the first format video in the first color space to the image-processing procedure.

7 . The method according to claim 6 , wherein the first color space is a YUV color space and the second color space is an RGB color space.

8 . An audiovisual system, comprising:

an image-processing circuit, which is configured to perform a method for processing a video comprising steps of:

receiving the video, and determining whether format conversion should be performed by identifying whether the video is a first format video or a second format video; and

performing a first format conversion procedure to convert the second format video into the first format video that is supported by an image-processing procedure performed in the audiovisual system when the video is determined to be the second format video, or directly performing the image-processing procedure on the video when the video is determined to be the first format video, and outputting the first format video that has undergone the image-processing procedure;

wherein, when a terminal display device connected to an output end of the audiovisual system supports the second format video, the first format video that has undergone the image-processing procedure is again converted to the second format video that is configured to be outputted to the terminal display device by performing a second format conversion procedure;

wherein the image-processing procedure that allows the audiovisual system to support processing both the first format video and the second format video comprises steps of:

statistically analyzing image features of the first format video; and

performing one or more image-processing processes including noise reduction, image sharpening, saturation adjustment, and contrast and hue adjustment on the first format video.

9 . The audiovisual system according to claim 8 , wherein the first format conversion procedure performed by the image-processing circuit comprises:

frame-by-frame converting the received second format video from a first color space to a second color space;

performing an electro-optical transfer procedure on the second format video in the second color space for transferring the second format video into visible light signals;

performing a color gamut conversion for converting the second format video in the second color space to the first format video;

performing an optical-electro transfer procedure on the first format video in the second color space for gamma correction; and

frame-by-frame converting the first format video that has undergone the gamma correction from the second color space to the first color space, and outputting the first format video in the first color space to the image-processing procedure.

10 . The audiovisual system according to claim 8 , wherein processing parameters applied to the image-processing procedure performed in the audiovisual system are modulated for the first format video so as to optimize the video outputted to the terminal display device.

11 . The audiovisual system according to claim 10 , wherein the first format conversion procedure performed by the image-processing circuit comprises:

frame-by-frame converting the received second format video from a first color space to a second color space;

performing an electro-optical transfer procedure on the second format video in the second color space for transferring the second format video into visible light signals;

performing a color gamut conversion for converting the second format video in the second color space to the first format video;

performing an optical-electro transfer procedure on the first format video in the second color space for gamma correction; and

frame-by-frame converting the first format video that has undergone the gamma correction from the second color space to the first color space, and outputting the first format video in the first color space to the image-processing procedure.

12 . The audiovisual system according to claim 8 , wherein the first format video supported by the image-processing procedure performed in the audiovisual system is a standard dynamic range video, and the second format video is a high dynamic range video.

13 . The audiovisual system according to claim 8 , wherein the audiovisual system is disposed in an image-processing device and allows videos of multiple video formats to share the image-processing procedure; and the image-processing device performs the first format conversion procedure and the image-processing procedure on the second format video so as to output the first format video.

14 . The audiovisual system according to claim 13 , wherein the first format conversion procedure performed by the image-processing circuit comprises:

frame-by-frame converting the received second format video from a first color space to a second color space;

performing an electro-optical transfer procedure on the second format video in the second color space for transferring the second format video into visible light signals;

performing a color gamut conversion for converting the second format video in the second color space to the first format video;

performing an optical-electro transfer procedure on the first format video in the second color space for gamma correction; and

frame-by-frame converting the first format video that has undergone the gamma correction from the second color space to the first color space, and outputting the first format video in the first color space to the image-processing procedure.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 20, 2023
From: YU, CHIA-WEI; OU, HSIN-YING
To: REALTEK SEMICONDUCTOR CORP.
Reel/Frame 065615/0118 →
Priority Claims (1)
TW 111144343 · Nov 21, 2022 · national
Continuity (1)
Related Publication 20240169507A1 · May 23, 2024
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