IP Library › Granted Patent US 11,949,883
Granted Patent B2
US 11,949,883 · App. 18/093,194 · Granted Apr 2, 2024

Inter prediction method and apparatus therefor

Inventors: Yongjoon Jeon (Seoul, KR); Seungwook Park (Seoul, KR); Jaehyun Lim (Seoul, KR); Chulkeun Kim (Seoul, KR); Jungsun Kim (Seoul, KR); Naeri Park (Seoul, KR); Hendry Hendry (Seoul, KR); Byeongmoon Jeon (Seoul, KR); Joonyoung Park (Seoul, KR)
Assignee: LG Electronics Inc.
H04N19/159H04N19/43H04N19/436H04N19/52H04N19/57H04N19/105H04N19/176
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Quick Facts
Patent No.
US 11,949,883
App. No.
18/093,194
Granted
Apr 2, 2024
Kind
B2
Abstract

According to the present invention, an inter prediction method comprises the steps of: generating a merge candidate list for a block to be predicted, wherein the block is to correspond to a current prediction unit; deriving, on the basis of one of a plurality of merge candidates constituting the merge candidate list, motion information on the block to be predicted; and performing, on the basis of the derived motion information, a prediction on the block to be predicted so as to generate a prediction block corresponding to the current prediction unit.

Claims (35)

1. A decoding apparatus for image decoding, the decoding apparatus comprising:

an entropy decoder configured to receive information on a parallel merge level which represents a size of a parallel merging unit region, to obtain merge flag information which represents whether a merge mode is applied to a current block;

a predictor configured to derive spatial merging candidates for the current block based on the merge flag information indicating that the merge mode is applied to the current block, to construct a merging candidate list including the spatial merging candidates for the current block, to derive motion information of the current block based on one of the spatial merging candidates in the merging candidate list, to derive prediction samples of the current block based on the derived motion information; and

an adder configured to generate a reconstructed picture based on the prediction samples,

wherein the size of the parallel merging unit region is derived based on the information on the parallel merge level,

wherein the current block belongs to the parallel merging unit region,

wherein the current block is related to a prediction unit (PU), and the PU is one of PUs partitioned from a coding unit (CU),

wherein for the PU, having a size smaller than the size of the parallel merging unit region and located within the parallel merging unit region, the spatial merging candidates are identical to spatial merging candidates of a 2N×2N PU which has a same size as the parallel merging unit region,

wherein the spatial merging candidates of the 2N×2N PU which has the same size as the parallel merging unit region, are derived from a lower left corner neighboring block, a left neighboring block, an upper right corner neighboring block, an upper neighboring block and an upper left corner neighboring block of the parallel merging unit region, and

wherein the information on the parallel merge level is received through a picture parameter set.

2. The decoding apparatus of claim 1 , wherein based on a value of the information on the parallel merge level being 0 , the size of the parallel merging unit region is 4×4.

3. The decoding apparatus of claim 1 , wherein based on a value of the information on the parallel merge level being greater than 0 , motion information for each of the PUs contained in the parallel merging unit region can be derived in parallel.

4. The decoding apparatus of claim 1 , wherein based on a value of the information on the parallel merge level being 1 , the size of the parallel merging unit region is 8×8, and

wherein based on a value of the information on the parallel merge level being 2 , the size of the parallel merging unit region is 16×16.

5. The decoding apparatus of claim 1 , wherein based on a value of the information on the parallel merge level being 3 , the size of the parallel merging unit region is 32×32, and

wherein based on a value of the information on the parallel merge level being 4 , the size of the parallel merging unit region is 64×64.

6. The decoding apparatus of claim 1 , wherein based on the size of the CU being 8×8 and the size of the parallel merging unit region being larger than 4×4, the PUs share the spatial merging candidates.

7. An encoding apparatus for image encoding, the encoding apparatus comprising:

a predictor configured to generate merge flag information based on whether a merge mode is applied to a current block, to derive spatial merging candidates for a current block based on the merge flag information indicating that the merge mode is applied to the current block, to construct a merging candidate list including the spatial merging candidates for the current block, to select a merging candidate from the merging candidate list, to generate merge index information for indicating the selected merging candidate from the merging candidate list, to derive a parallel merge level which represents a size of a parallel merging unit region, to generate information on the parallel merge level; and

an entropy encoder configured to encode image information including the merge flag information, the merge index information and the information on the parallel merge level,

wherein the size of the parallel merging unit region is represented based on the information on the parallel merge level,

wherein the current block belongs to the parallel merging unit region,

wherein the current block is related to a prediction unit (PU), and the PU is one of PUs partitioned from a coding unit (CU),

wherein for the PU, having a size smaller than the size of the parallel merging unit region and located within the parallel merging unit region, the spatial merging candidates are identical to spatial merging candidates of a 2N×2N PU which has a same size as the parallel merging unit region,

wherein the spatial merging candidates of the 2N×2N PU which has the same size as the parallel merging unit region, are derived from a lower left corner neighboring block, a left neighboring block, an upper right corner neighboring block, an upper neighboring block and an upper left corner neighboring block of the parallel merging unit region, and

wherein the information on the parallel merge level is signaled through a picture parameter set.

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

at least one processor configured to obtain a bitstream for the image, wherein the bitstream is generated based on generating merge flag information based on whether a merge mode is applied to a current block, deriving spatial merging candidates for a current block based on the merge flag information indicating that the merge mode is applied to the current block, constructing a merging candidate list including the spatial merging candidates for the current block, selecting a merging candidate from the merging candidate list, generating merge index information for indicating the selected merging candidate from the merging candidate list, deriving a parallel merge level which represents a size of a parallel merging unit region, generating information on the parallel merge level, and encoding image information including the merge flag information, the merge index information and the information on the parallel merge level; and

a transmitter configured to transmit the data comprising the bitstream,

wherein the size of the parallel merging unit region is represented based on the information on the parallel merge level,

wherein the current block belongs to the parallel merging unit region,

wherein the current block is related to a prediction unit (PU), and the PU is one of PUs partitioned from a coding unit (CU),

wherein for the PU, having a size smaller than the size of the parallel merging unit region and located within the parallel merging unit region, the spatial merging candidates are identical to spatial merging candidates of a 2N×2N PU which has a same size as the parallel merging unit region,

wherein the spatial merging candidates of the 2N×2N PU which has the same size as the parallel merging unit region, are derived from a lower left corner neighboring block, a left neighboring block, an upper right corner neighboring block, an upper neighboring block and an upper left corner neighboring block of the parallel merging unit region, and

wherein the information on the parallel merge level is signaled through a picture parameter set.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 28, 2023
From: JEON, YONGJOON; PARK, SEUNGWOOK; LIM, JAEHYUN; KIM, CHULKEUN; KIM, JUNGSUN; PARK, NAERI; HENDRY, HENDRY; JEON, BYEONGMOON; PARK, JOONYOUNG
To: LG ELECTRONICS INC.
Reel/Frame 064723/0613 →
Continuity (14)
Continuation 17362604 · Jun 29, 2021
Continuation 16814808 · Mar 10, 2020
Continuation 16173825 · Oct 29, 2018
Continuation 15463021 · Mar 20, 2017
Continuation 14343882
Provisional Application 61532562 · Sep 9, 2011
Provisional Application 61540543 · Sep 29, 2011
Provisional Application 61557337 · Nov 8, 2011
Provisional Application 61557861 · Nov 9, 2011
Provisional Application 61563817 · Nov 27, 2011
Provisional Application 61578832 · Dec 21, 2011
Provisional Application 61583622 · Jan 6, 2012
Provisional Application 61585654 · Jan 12, 2012
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