IP Library › Granted Patent US 11,956,451
Granted Patent B2
US 11,956,451 · App. 18/202,023 · Granted Apr 9, 2024

Method for decoding image on basis of CCLM prediction in image coding system, and device therefor

Inventors: Jangwon Choi (Seoul, KR); Jin Heo (Seoul, KR); Seunghwan Kim (Seoul, KR); Sunmi Yoo (Seoul, KR); Ling Li (Seoul, KR); Jungah Choi (Seoul, KR)
Assignee: LG ELECTRONICS INC.
H04N19/186H04N19/105H04N19/136H04N19/176
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Quick Facts
Patent No.
US 11,956,451
App. No.
18/202,023
Granted
Apr 9, 2024
Kind
B2
Abstract

A video decoding method performed by a decoding apparatus includes deriving one of a plurality of cross-component linear model (CCLM) prediction mode as a CCLM prediction mode of the current chroma block, deriving a sample number of neighboring chroma samples of the current chroma block based on the CCLM prediction mode of the current chroma block, a size of the current chroma block, and a specific value derived as 2. The method includes deriving the neighboring chroma samples of the sample number, calculating CCLM parameters based on the neighboring chroma samples and the down sampled neighboring luma samples, deriving prediction samples for the current chroma block based on the CCLM parameters and the down sampled luma samples and generating reconstructed samples for the current chroma block based on the prediction samples.

Claims (40)

1. An image decoding apparatus for an image decoding, the image decoding apparatus comprising:

a memory; and

at least one processor connected to the memory, the at least one processor configured to:

obtain image information comprising prediction mode information for a current chroma block;

derive one of a plurality of cross-component linear model (CCLM) prediction modes as a CCLM prediction mode of the current chroma block, based on the prediction mode information;

derive a sample number of neighboring chroma samples of the current chroma block based on a width or height of the current chroma block and a specific value;

derive the neighboring chroma samples of the sample number;

derive down sampled neighboring luma samples related with the neighboring chroma samples and down sampled luma samples of a current luma block;

calculate CCLM parameters based on the neighboring chroma samples and the down sampled neighboring luma samples;

derive prediction samples for the current chroma block based on the CCLM parameters and the down sampled luma samples; and

generate reconstructed samples for the current chroma block based on the prediction samples,

wherein the specific value is derived as 2,

wherein the width or height of the current chroma block is N,

wherein the plurality of CCLM prediction modes include a left top LM mode, a top LM mode and a left LM mode,

wherein based on the N being less than or equal to the specific value, the sample number of the neighboring chroma samples is derived as 2N, and

wherein based on the N being greater than the specific value, the sample number of the neighboring chroma samples is derived as 4.

2. An image encoding apparatus for an image encoding, the image encoding apparatus comprising:

a memory; and

at least one processor connected to the memory, the at least one processor configured to:

determine a cross-component linear model (CCLM) prediction mode of a current chroma block, among a plurality of CCLM prediction modes;

derive a sample number of neighboring chroma samples of the current chroma block based on a width or height of the current chroma block and a specific value;

derive the neighboring chroma samples of the sample number;

derive down sampled neighboring luma samples related with the neighboring chroma samples and down sampled luma samples of a current luma block;

derive CCLM parameters based on the neighboring chroma samples and the down sampled neighboring luma samples;

derive prediction samples for the current chroma block based on the CCLM parameters and the down sampled luma samples; and

encode image information including prediction mode information for the current chroma block,

wherein the specific value is derived as 2,

wherein the width or height of the current chroma block is N,

wherein the plurality of CCLM prediction modes include a left top linear model (LM) mode, a top LM mode and a left LM mode,

wherein based on the N being less than or equal to the specific value, the sample number of the neighboring chroma samples is derived as 2N, and

wherein based on the N being greater than the specific value, the sample number of the neighboring chroma samples is derived as 4.

3. An apparatus for transmitting data for an image, the apparatus comprising:

at least one processor configured to obtain a bitstream of image information including prediction mode information for a current chroma block; and

a transmitter configured to transmit the data including the bitstream of the image information including prediction mode information,

wherein the prediction mode information is generated by determining a cross-component linear model (CCLM) prediction mode of the current chroma block, among a plurality of CCLM prediction modes, deriving a sample number of neighboring chroma samples of the current chroma block based on a width or height of the current chroma block and a specific value, deriving the neighboring chroma samples of the sample number, deriving down sampled neighboring luma samples related with the neighboring chroma samples and down sampled luma samples of a current luma block, deriving CCLM parameters based on the neighboring chroma samples and the down sampled neighboring luma samples, deriving prediction samples for the current chroma block based on the CCLM parameters and the down sampled luma samples, and encoding the image information including the prediction mode information for the current chroma block,

wherein the specific value is derived as 2,

wherein the width or height of the current chroma block is N,

wherein the plurality of CCLM prediction modes include a left top linear model (LM) mode, a top LM mode and a left LM mode,

wherein based on the N being less than or equal to the specific value, the sample number of the neighboring chroma samples is derived as 2N, and

wherein based on the N being greater than the specific value, the sample number of the neighboring chroma samples is derived as 4.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 25, 2023
From: CHOI, JANGWON; HEO, JIN; KIM, SEUNGHWAN; YOO, SUNMI; LI, LING; CHOI, JUNGAH
To: LG ELECTRONICS INC.
Reel/Frame 063764/0493 →
Continuity (6)
Continuation 17719090 · Apr 12, 2022
Continuation 17180474 · Feb 19, 2021
Continuation 16892095 · Jun 3, 2020
Continuation PCTKR2019015253 · Nov 11, 2019
Provisional Application 62770835 · Nov 23, 2018
Related Publication 20230308665A1 · Sep 28, 2023