IP Library Granted Patent US 11,240,533
Granted Patent B2
US 11,240,533 · App. 17/368,005 · Granted Feb 1, 2022

Video decoding method using residual information in video coding system, and apparatus thereof

Inventors: Jungah Choi (Seoul, KR); Sunmi Yoo (Seoul, KR); Jin Heo (Seoul, KR); Jangwon Choi (Seoul, KR); Ling Li (Seoul, KR); Seunghwan Kim (Seoul, KR); Jaehyun Lim (Seoul, KR)
Assignee: LG ELECTRONICS, INC.
H04N19/60H04N19/132H04N19/176H04N19/184H04N19/70H04N19/137
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Quick Facts
Patent No.
US 11,240,533
App. No.
17/368,005
Granted
Feb 1, 2022
Kind
B2
Abstract

A video decoding method performed by a decoding apparatus according to the present document comprises the steps of: receiving a bit stream including residual information of a current block; deriving a specific number of the number of context encoding bins for context syntax elements for a current sub-block of the current block; decoding the context syntax elements for the current sub-block included in the residual information on the basis of the specific number; deriving transform coefficients for the current sub-block on the basis of the decoded context syntax elements; deriving residual samples for the current block on the basis of the transform coefficients; and generating a reconstructed picture on the basis of the residual samples.

Claims (31)

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

receiving a bitstream comprising residual information on a current block;

deriving a specific number for a number of context-coded bins for context syntax elements for a current block;

decoding the context syntax elements for the current block comprised in the residual information based on the specific number;

deriving transform coefficients for the current block based on the decoded context syntax elements;

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

generating a reconstructed picture based on the residual samples,

wherein, based on a transform skip being applied to the current block, a significant coefficient flag relating to whether a transform coefficient is a non-zero transform coefficient, a sign flag relating to a sign of the transform coefficient, a first transform coefficient level flag relating to whether a transform coefficient level is greater than a first threshold, a parity level flag relating to a parity of the transform coefficient level of the transform coefficient, and a second transform coefficient level flag relating to whether the transform coefficient level of the transform coefficient is greater than a second threshold are decoded based on a context model until the specific number is reached, and

wherein, when a total number of context-coded bins for context syntax elements of transform coefficient 0 to transform coefficient n of the current block reaches the specific number, signaling of context syntax elements for transform coefficient n+1 of the current block is omitted, and a bypass syntax element for transform coefficient n+1 comprised in the residual information is decoded.

2. The image decoding method of claim 1 , wherein the specific number is set based on a size of the current block.

3. The image decoding method of claim 1 , wherein a value of transform coefficient n+1 is derived based on a value of the decoded bypass syntax element.

4. The image decoding method of claim 1 , wherein the bypass syntax element comprises abs_remainder for a remaining absolute value of a transform coefficient level coded at a predetermined scanning position.

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

deriving residual samples for a current block;

deriving transform coefficients in a current block based on the residual samples;

deriving a specific number for a number of context-coded bins for context syntax elements for the current block;

encoding the context syntax elements based on the specific number; and

generating a bitstream comprising residual information on the current block comprising the encoded context syntax elements,

wherein, based on a transform skip being applied to the current block, a significant coefficient flag relating to whether a transform coefficient is a non-zero transform coefficient, a sign flag relating to a sign of the transform coefficient, a first transform coefficient level flag relating to whether a transform coefficient level is greater than a first threshold, a parity level flag relating to a parity of the transform coefficient level of the transform coefficient, and a second transform coefficient level flag relating to whether the transform coefficient level of the transform coefficient is greater than a second threshold are encoded based on a context model until the specific number is reached, and

wherein, when a total number of context-coded bins for context syntax elements of transform coefficient 0 to transform coefficient n of the current block reaches the specific number, signaling of context syntax elements for transform coefficient n+1 of the current block is omitted, and a bypass syntax element for transform coefficient n+1 comprised in the residual information is encoded.

6. The image encoding method of claim 5 , wherein the specific number is set based on a size of the current block.

7. The image encoding method of claim 5 , wherein a value of transform coefficient n+1 is derived based on a value of the encoded bypass syntax element.

8. The image encoding method of claim 5 , wherein the bypass syntax element comprises abs_remainder for a remaining absolute value of a transform coefficient level coded at a predetermined scanning position.

9. A non-transitory computer-readable digital storage medium that stores a bitstream comprising residual information generated by a method, the method comprising:

deriving residual samples for a current block;

deriving transform coefficients in a current block based on the residual samples;

deriving a specific number for a number of context-coded bins for context syntax elements for the current block;

encoding the context syntax elements based on the specific number; and

generating the bitstream comprising the residual information on the current block comprising the encoded context syntax elements,

wherein, based on a transform skip being applied to the current block, a significant coefficient flag relating to whether a transform coefficient is a non-zero transform coefficient, a sign flag relating to a sign of the transform coefficient, a first transform coefficient level flag relating to whether a transform coefficient level is greater than a first threshold, a parity level flag relating to a parity of the transform coefficient level of the transform coefficient, and a second transform coefficient level flag relating to whether the transform coefficient level of the transform coefficient is greater than a second threshold are encoded based on a context model until the specific number is reached, and

wherein, when a total number of context-coded bins for context syntax elements of transform coefficient 0 to transform coefficient n of the current block reaches the specific number, signaling of context syntax elements for transform coefficient n+1 of the current block is omitted, and a bypass syntax element for transform coefficient n+1 comprised in the residual information is encoded.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 2, 2023
From: TAISSA RESEARCH LLC
To: ROSEDALE DYNAMICS LLC
Reel/Frame 062926/0951 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 11, 2022
From: LG ELECTRONICS INC.
To: TAISSA RESEARCH LLC
Reel/Frame 061148/0325 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 12, 2021
From: CHOI, JUNGAH; YOO, SUNMI; LIM, JAEHYUN; HEO, JIN; LI, LING; CHOI, JANGWON; KIM, SEUNGHWAN
To: LG ELECTRONICS INC.
Reel/Frame 056827/0042 →
Continuity (3)
Continuation PCTKR2020000671 · Jan 14, 2020
Provisional Application 62792339 · Jan 14, 2019
Related Publication 20210337235A1 · Oct 28, 2021
Cited By (1)
US 12,671,839