IP Library Granted Patent US 11,943,469
Granted Patent B2
US 11,943,469 · App. 17/860,515 · Granted Mar 26, 2024

Video decoding method and device, and video encoding method and device

Inventors: Anish Tamse (Suwon-si, KR); Minwoo Park (Suwon-si, KR); Gahyun Ryu (Suwon-si, KR); Minsoo Park (Suwon-si, KR); Seungsoo Jeong (Suwon-si, KR); Kiho Choi (Suwon-si, KR); Narae Choi (Suwon-si, KR); Woongil Choi (Suwon-si, KR); Yinji Piao (Suwon-si, KR)
Assignee: SAMSUNG ELECTRONICS CO., LTD.
H04N19/52H04N19/119H04N19/139H04N19/159H04N19/176H04N19/186H04N19/527
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Quick Facts
Patent No.
US 11,943,469
App. No.
17/860,515
Granted
Mar 26, 2024
Kind
B2
Abstract

A video decoding method and device for determining whether a prediction mode of a current block is an affine mode; splitting, when the prediction mode of the current block is the affine mode, a luma block of the current block into a plurality of sub luma blocks having a square shape based on a predefined sub block size; determining a mean luma motion vector for four neighboring sub luma blocks among the plurality of sub luma blocks, by using a motion vector of an upper-left sub luma block of the four sub luma blocks and a motion vector of a lower-right sub luma block of the four sub luma blocks; determining the mean luma motion vector to be a motion vector of a current sub chroma block corresponding to the four sub luma blocks; and performing prediction on the current sub chroma block by using the determined motion vector, in a video encoding and decoding process are suggested.

Claims (29)

1. A video decoding method comprising:

obtaining an affine parameter of a current block if a prediction mode of the current block is an affine mode;

determining motion vectors of a plurality of sub luma blocks using the affine parameter of the current block, wherein the plurality of sub luma blocks are included in the current block;

determining a mean luma motion vector for four sub luma blocks among the plurality of sub luma blocks by using one set between a first set and a second set, wherein the four sub luma blocks including a first sub luma block, a second sub luma block, a third sub luma block, and a fourth sub luma block;

determining the mean luma motion vector to be a motion vector of a current sub chroma block corresponding to the four sub luma blocks; and

performing prediction on the current sub chroma block by using the determined motion vector,

wherein the first set includes a motion vector of the first sub luma block and a motion vector of the fourth sub luma block, and excludes at least one of a motion vector of the second sub luma block and a motion vector of the third sub luma block, and

wherein the second set includes the motion vector of the second sub luma block and the motion vector of the third sub luma block, and excludes at least one of the motion vector of the first sub luma block and the motion vector of the fourth sub luma block,

wherein the first sub luma block is located an upper-left portion of a four neighboring sub luma blocks, the second sub luma block is located an upper-right portion of the four neighboring sub luma blocks, the third sub luma block is located an lower-left portion of the four neighboring sub luma blocks, and the fourth sub luma block is an lower-right portion of the four neighboring sub luma blocks.

2. A video encoding method comprising:

obtaining an affine parameter of a current block if a prediction mode of the current block is an affine mode;

determining motion vectors of a plurality of sub luma blocks using the affine parameter of the current block, wherein the plurality of sub luma blocks are included in the current block;

determining a mean luma motion vector for four sub luma blocks among the plurality of sub luma blocks by using one set between a first set and a second set, wherein the four sub luma blocks including a first sub luma block, a second sub luma block, a third sub luma block, and a fourth sub luma block;

determining the mean luma motion vector to be a motion vector of a current sub chroma block corresponding to the four sub luma blocks; and

performing prediction on the current sub chroma block by using the determined motion vector,

wherein the first set includes a motion vector of the first sub luma block and a motion vector of the fourth sub luma block, and excludes at least one of a motion vector of the second sub luma block and a motion vector of the third sub luma block, and

wherein the second set includes the motion vector of the second sub luma block and the motion vector of the third sub luma block, and excludes at least one of the motion vector of the first sub luma block and the motion vector of the fourth sub luma block,

wherein the first sub luma block is located an upper-left portion of a four neighboring sub luma blocks, the second sub luma block is located an upper-right portion of the four neighboring sub luma blocks, the third sub luma block is located an lower-left portion of the four neighboring sub luma blocks, and the fourth sub luma block is an lower-right portion of the four neighboring sub luma blocks.

3. A non-transitory computer-readable medium for recording a bitstream, the bitstream comprising:

an encoded data of a current block,

wherein the encoded data of the current block is obtained by:

obtaining an affine parameter of the current block if a prediction mode of the current block is an affine mode;

determining motion vectors of a plurality of sub luma blocks using the affine parameter of the current block, wherein the plurality of sub luma blocks are included in the current block;

determining a mean luma motion vector for four sub luma blocks among the plurality of sub luma blocks by using one set between a first set and a second set, wherein the four sub luma blocks including a first sub luma block, a second sub luma block, a third sub luma block, and a fourth sub luma block;

determining the mean luma motion vector to be a motion vector of a current sub chroma block corresponding to the four sub luma blocks; and

performing prediction on the current sub chroma block by using the determined motion vector,

wherein the first set includes a motion vector of the first sub luma block and a motion vector of the fourth sub luma block, and excludes at least one of a motion vector of the second sub luma block and a motion vector of the third sub luma block, and

wherein the second set includes the motion vector of the second sub luma block and the motion vector of the third sub luma block, and excludes at least one of the motion vector of the first sub luma block and the motion vector of the fourth sub luma block,

wherein the first sub luma block is located an upper-left portion of a four neighboring sub luma blocks, the second sub luma block is located an upper-right portion of the four neighboring sub luma blocks, the third sub luma block is located an lower-left portion of the four neighboring sub luma blocks, and the fourth sub luma block is an lower-right portion of the four neighboring sub luma blocks.

Continuity (4)
Continuation 17311209
Provisional Application 62783653 · Dec 21, 2018
Provisional Application 62776589 · Dec 7, 2018
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