IP Library Granted Patent US 11,758,142
Granted Patent B2
US 11,758,142 · App. 17/729,400 · Granted Sep 12, 2023

Method for transform-based image coding and apparatus therefor

Inventors: Moonmo Koo (Seoul, KR); Hyeongmoon Jang (Seoul, KR); Seunghwan Kim (Seoul, KR); Jaehyun Lim (Seoul, KR)
Assignee: LG Electronics Inc.
H04N19/132H04N19/159H04N19/176H04N19/18H04N19/186
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Quick Facts
Patent No.
US 11,758,142
App. No.
17/729,400
Granted
Sep 12, 2023
Kind
B2
Abstract

A method for image decoding, according to the present document, may comprise the steps of: deriving an intra prediction mode of a chroma block as a cross-component linear model (CCLM) mode; updating the intra prediction mode of the chroma block on the basis of an intra prediction mode of a luma block corresponding to the chroma block; and determining an LFNST set including LFNST matrices on the basis of the updated intra prediction mode, wherein the updated intra prediction mode is derived as an intra prediction mode corresponding to a specific position in the luma block, and the specific position is set on the basis of a color format of the chroma block.

Claims (41)

1. An image decoding method performed by a decoding apparatus, the method comprising:

obtaining intra prediction mode information and an LFNST index from a bitstream;

deriving an intra prediction mode for a chroma block as a cross-component linear model (CCLM) mode based on the intra prediction mode information;

updating the intra prediction mode for the chroma block based on an intra prediction mode for a luma block corresponding to the chroma block;

determining an LFNST set comprising LFNST matrices based on the updated intra prediction mode;

deriving transform coefficients for the chroma block based on an LFNST matrix derived from the LFNST index and the LFNST set; and

deriving residual samples for the chroma block based on the transform coefficients,

wherein the updated intra prediction mode is derived as an intra prediction mode corresponding to a specific position in the luma block,

wherein a color format is 4:2:2,

wherein the specific position is set to ((xTbY+nTbW), (yTbY+nTbH/2)),

wherein xTbY and yTbY denote top-left coordinates of the luma block, and

wherein nTbW and nTbH denote a width and a height of the chroma block.

2. The image decoding method of claim 1 , wherein the specific position is a center position of the luma block.

3. The image decoding method of claim 1 , wherein the color format is 4:2:0;

wherein the specific position is set to ((xTbY+nTbW), (yTbY+nTbH)).

4. An image encoding method performed by an encoding apparatus, the method comprising:

deriving an intra prediction mode for a chroma block as a cross-component linear model (CCLM) mode;

deriving prediction samples for the chroma block based on the CCLM mode;

deriving residual samples for the chroma block based on the prediction samples;

updating the intra prediction mode for the chroma block based on an intra prediction mode for a luma block corresponding to the chroma block;

determining an LFNST set comprising LFNST matrices based on the updated intra prediction mode; and

deriving modified transform coefficients for the chroma block,

wherein the updated intra prediction mode is derived as an intra prediction mode corresponding to a specific position in the luma block,

wherein a color format is 4:2:2;

wherein the specific position is set to ((xTbY+nTbW), (yTbY+nTbH/2)),

wherein xTbY and yTbY denote top-left coordinates of the luma block, and

wherein nTbW and nTbH denote a width and a height of the chroma block.

5. The image encoding method of claim 4 , wherein the specific position is a center position of the luma block.

6. The image encoding method of claim 4 , wherein the color format is 4:2:0;

wherein the specific position is set to ((xTbY+nTbW), (yTbY+nTbH)).

7. A non-transitory computer-readable digital storage medium that stores a bitstream generated by the image encoding method of claim 4 .

8. A transmitting method of data for an image, the method comprising:

obtaining a bitstream for the image, wherein the bitstream is generated based on deriving an intra prediction mode for a chroma block as a cross-component linear model (CCLM) mode; deriving prediction samples for the chroma block based on the CCLM mode; deriving residual samples for the chroma block based on the prediction samples; updating the intra prediction mode for the chroma block based on an intra prediction mode for a luma block corresponding to the chroma block; determining an LFNST set comprising LFNST matrices based on the updated intra prediction mode; deriving modified transform coefficients for the chroma block; and encoding residual information related to the modified transform coefficients to generate the bitstream;

transmitting the data comprising the bitstream,

wherein the updated intra prediction mode is derived as an intra prediction mode corresponding to a specific position in the luma block,

wherein a color format is 4:2:2;

wherein the specific position is set to ((xTbY+nTbW), (yTbY+nTbH/2)),

wherein xTbY and yTbY denote top-left coordinates of the luma block, and

wherein nTbW and nTbH denote a width and a height of the chroma block.

9. The image decoding method of claim 1 , wherein the luma block is not coded based on a Matrix-based Intra Prediction (MIP) mode, an Intra Block Copy (IBC) mode or a Palette (PLT) mode.

10. The image encoding method of claim 4 , wherein the luma block is not coded based on a Matrix-based Intra Prediction (MIP) mode, an Intra Block Copy (IBC) mode or a Palette (PLT) mode.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 22, 2022
From: KOO, MOONMO; JANG, HYEONGMOON; KIM, SEUNGHWAN; LIM, JAEHYUN
To: LG ELECTRONICS INC.
Reel/Frame 060597/0470 →
Continuity (3)
Continuation PCTKR2020014914 · Oct 29, 2020
Provisional Application 62927667 · Oct 29, 2019
Related Publication 20220264101A1 · Aug 18, 2022
Cited By (1)
US 12,470,751