IP Library › Granted Patent US 11,490,125
Granted Patent B2
US 11,490,125 · App. 17/673,201 · Granted Nov 1, 2022

Image decoding method for residual data coding in image coding system, and apparatus therefor

Inventors: Jungah Choi (Seoul, KR); Jin Heo (Seoul, KR); Sunmi Yoo (Seoul, KR); Jaehyun Lim (Seoul, KR); Jangwon Choi (Seoul, KR); Seunghwan Kim (Seoul, KR)
Assignee: LG ELECTRONICS INC.
H04N19/70H04N19/132H04N19/176H04N19/18H04N19/46
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Quick Facts
Patent No.
US 11,490,125
App. No.
17/673,201
Granted
Nov 1, 2022
Kind
B2
Abstract

An image decoding method performed by a decoding apparatus, according to the present document, comprises the steps of: acquiring syntax elements for a first transform coefficient through an n-th transform coefficient of a current block, wherein the syntax elements are syntax elements according to a first residual data coding structure of TSRC; and acquiring syntax elements for an n+1st transform coefficient through a last transform coefficient of the current block, wherein the syntax elements are syntax elements according to a second residual data coding structure of the TSRC, wherein the number of context-coded syntax elements for the first transform coefficient through the n-th transform coefficient is equal to the maximum number of context-coded bins of the current block, and the syntax elements according to the second residual data coding structure include coefficient level information and a sign flag for a transform coefficient.

Claims (39)

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

obtaining syntax elements for a first transform coefficient to an n-th transform coefficient of a current block, wherein the syntax elements are syntax elements according to a first residual data coding structure of Transform Skip Residual Coding (TSRC);

obtaining syntax elements for an n+1th transform coefficient to a last transform coefficient of the current block, wherein the syntax elements are syntax elements according to a second residual data coding structure of the TSRC;

deriving transform coefficients of the current block based on the syntax elements according to the first residual data coding structure and the syntax elements according to the second residual data coding structure;

deriving residual samples of the current block based on the transform coefficients; and

generating a reconstructed picture based on the residual samples,

wherein a number of context-coded syntax elements for the first transform coefficient to the n-th transform coefficient is equal to a maximum number of context coded bins of the current block, and

wherein the syntax elements according to the second residual data coding structure include coefficient level information and a sign flag for a transform coefficient.

2. The image decoding method of claim 1 , wherein the context-coded syntax elements among the syntax elements according to the first residual data coding structure includes a significant coefficient flag for whether a transform coefficient is a non-zero transform coefficient, a sign flag for a sign for the transform coefficient, a first coefficient level flag for whether a coefficient level of the transform coefficient is greater than a first threshold value, and a parity level flag for a parity of the coefficient level for the transform coefficient.

3. The image decoding method of claim 1 , wherein the current block is a transform skip block,

wherein a transform skip flag representing whether transform is applied to the current block is obtained, and

wherein a value of the transform skip flag for the current block is 1.

4. The image decoding method of claim 1 , wherein the maximum number of the context-coded bins of the current block is derived based on a width and a height of the current block.

5. The image decoding method of claim 1 , wherein the syntax elements for the n+1th transform coefficient to the last transform coefficient are derived based on the syntax elements according to the second residual data coding structure.

6. The image decoding method of claim 5 , wherein a coefficient level of the transform coefficient is derived as a value represented by the coefficient level information for the transform coefficient, and a sign of the transform coefficient is derived as a sign indicated by the sign flag.

7. The image decoding method of claim 1 , wherein the context-coded bins for the current block are all used as bins of the context-coded syntax elements for the first transform coefficient to the n-th transform coefficient.

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

deriving transform coefficients for a current block;

generating syntax elements for a first transform coefficient to an n-th transform coefficient of the current block, wherein the syntax elements are syntax elements according to a first residual data coding structure of Transform Skip Residual Coding (TSRC);

generating syntax elements for an n+1th transform coefficient to a last transform coefficient of the current block, wherein the syntax elements are syntax elements according to a second residual data coding structure of the TSRC;

encoding image information including the syntax elements according to the first residual data coding structure and the syntax elements according to the second residual data coding structure,

wherein a number of context-coded syntax elements for the first transform coefficient to the n-th transform coefficient is equal to a maximum number of context coded bins of the current block, and

wherein the syntax elements according to the second residual data coding structure include coefficient level information and a sign flag for a transform coefficient.

9. The image encoding method of claim 8 , wherein the context-coded syntax elements among the syntax elements according to the first residual data coding structure includes a significant coefficient flag for whether a transform coefficient is a non-zero transform coefficient, a sign flag for a sign for the transform coefficient, a first coefficient level flag for whether a coefficient level of the transform coefficient is greater than a first threshold value, and a parity level flag for a parity of the coefficient level for the transform coefficient.

10. The image encoding method of claim 8 , wherein the current block is a transform skip block,

wherein the image information includes a transform skip flag representing whether transform is applied to the current block, and

wherein a value of the transform skip flag for the current block is 1.

11. The image encoding method of claim 8 , wherein the maximum number of the context-coded bins of the current block is derived based on a width and a height of the current block.

12. The image encoding method of claim 8 , wherein the context-coded bins for the current block are all used as bins of the context-coded syntax elements for the first transform coefficient to the n-th transform coefficient.

13. A non-transitory computer-readable storage medium storing a bitstream generated by a method, the method comprising:

deriving transform coefficients for a current block;

generating syntax elements for a first transform coefficient to an n-th transform coefficient of the current block, wherein the syntax elements are syntax elements according to a first residual data coding structure of Transform Skip Residual Coding (TSRC);

generating syntax elements for an n+1th transform coefficient to a last transform coefficient of the current block, wherein the syntax elements are syntax elements according to a second residual data coding structure of the TSRC;

encoding image information including the syntax elements according to the first residual data coding structure and the syntax elements according to the second residual data coding structure; and

generating the bitstream including the image information,

wherein a number of context-coded syntax elements for the first transform coefficient to the n-th transform coefficient is equal to a maximum number of context coded bins of the current block, and

wherein the syntax elements according to the second residual data coding structure include coefficient level information and a sign flag for a transform coefficient.

14. The computer-readable storage medium of claim 13 , wherein the context-coded syntax elements among the syntax elements according to the first residual data coding structure includes a significant coefficient flag for whether a transform coefficient is a non-zero transform coefficient, a sign flag for a sign for the transform coefficient, a first coefficient level flag for whether a coefficient level of the transform coefficient is greater than a first threshold value, and a parity level flag for a parity of the coefficient level for the transform coefficient.

15. The computer-readable storage medium of claim 13 , wherein context-coded bins for the current block are all used as bins of the context-coded residual syntax elements for the residual coefficients before the current residual coefficient.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 16, 2022
From: CHOI, JUNGAH; HEO, JIN; YOO, SUNMI; LIM, JAEHYUN; CHOI, JANGWON; KIM, SEUNGHWAN
To: LG ELECTRONICS INC.
Reel/Frame 059028/0010 →
Continuity (3)
Continuation PCTKR2020011616 · Aug 31, 2020
Provisional Application 62894751 · Aug 31, 2019
Related Publication 20220174324A1 · Jun 2, 2022