IP Library Granted Patent US 11,470,306
Granted Patent B2
US 11,470,306 · App. 17/223,419 · Granted Oct 11, 2022

Method and device for processing video signal using MPM configuration method for multiple reference lines

Inventors: Dongcheol Kim (Suwon-Si, KR); Geonjung Ko (Seoul, KR); Jaehong Jung (Seoul, KR); Juhyung Son (Uiwang-si, KR); Jinsam Kwak (Anyang-Si, KR)
Assignee: WILUS INSTITUTE OF STANDARDS AND TECHNOLOGY INC.
H04N19/105H04N19/132H04N19/159H04N19/176
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Quick Facts
Patent No.
US 11,470,306
App. No.
17/223,419
Granted
Oct 11, 2022
Kind
B2
Abstract

A video signal processing method comprises the steps of: obtaining information, from a received bitstream, indicating whether an MPM is used in a current block; when at least one of the intra prediction mode of the left block of the current block or the intra prediction mode of the upper block of the current block is an angular mode, generating an MPM list using only the angular mode; determining the intra prediction mode on the basis of the MPM list; and predicting the current block on the basis of the determined intra prediction mode.

Claims (68)

1. A device for decoding a video signal, the device comprising a processor,

wherein the processor is configured to:

obtain, an index of intra prediction mode of a current block,

obtain a reference sample line index for the current block, and

when the index of intra prediction mode is greater than or equal to 34 and an angle of the intra prediction mode mapped to the index of intra prediction mode is greater than or equal to 0, generate a plurality of first reference samples and a plurality of first additional reference samples based on a reconstructed upper block adjacent to the current block, and

when the index of intra prediction mode is less than 34 and the angle of the intra prediction mode mapped to the index of intra prediction mode is greater than or equal to 0, generate a plurality of second reference samples and a plurality of second additional reference samples based on a reconstructed left block adjacent to the current block.

2. The device of claim 1 ,

wherein when the index of intra prediction mode is 34, the intra prediction mode is a diagonal mode.

3. The device of claim 1 ,

wherein the plurality of first reference samples are reconstructed samples positioned above the current block,

wherein the plurality of first additional reference samples are obtained by padding the rightmost sample among the plurality of first reference samples,

wherein the plurality of second reference samples are reconstructed samples positioned to the left of the current block,

wherein the plurality of second additional reference samples are obtained by padding the lowermost sample among the plurality of second reference samples.

4. The device of claim 1 ,

wherein

a number of the plurality of first additional reference samples and a number of the plurality of second additional reference samples are determined based on the reference sample line index or a ratio of a width of the current block and a height of the current block.

5. The device of claim 1 ,

wherein a number of the plurality of first additional reference samples and a number of the plurality of second additional reference samples are obtained based on an equation shown below:

the number of the plurality of first additional reference samples=the reference sample line index×a first ratio of a width of the current block and a height of the current block+an offset,

the number of the plurality of second additional reference samples=the reference sample line index×a second ratio of the width of the current block and the height of the current block+the offset.   [equation]

6. The device of claim 5 ,

wherein the offset is 1.

7. A device for encoding a video signal, the device comprising:

a processor,

wherein the processor is configured to

obtain a bitstream to be decoded by a decoder using a decoding method,

wherein the decoding method comprising:

obtaining an index of intra prediction mode of a current block;

obtaining, a reference sample line index for the current blocks;

when the index of intra prediction mode is greater than or equal to 34 and an angle of the intra prediction mode mapped to the index of intra prediction mode is greater than or equal to 0, generating a plurality of first reference samples and a plurality of first additional reference samples based on a reconstructed upper block adjacent to the current block; and

when the index of intra prediction mode is less than 34 and the angle of the intra prediction mode mapped to the index of intra prediction mode is greater than or equal to 0, generating a plurality of second reference samples and a plurality of second additional reference samples based on a reconstructed left block adjacent to the current block.

8. The device of claim 7 , wherein when the index of intra prediction mode is 34, the intra prediction mode is a diagonal mode.

9. The device of claim 7 ,

wherein the plurality of first reference samples are reconstructed samples positioned above the current block,

wherein the plurality of first additional reference samples are obtained by padding the rightmost sample among the plurality of first reference samples,

wherein the plurality of second reference samples are reconstructed samples positioned to the left of the current block,

wherein the plurality of second additional reference samples are obtained by padding the lowermost sample among the plurality of second reference samples.

10. The device of claim 7 ,

wherein

a number of the plurality of first additional reference samples and a number of the plurality of second additional reference samples are determined based on the reference sample line index or a ratio of a width of the current block and a height of the current block.

11. The device of claim 7 ,

wherein a number of the plurality of first additional reference samples and a number of the plurality of second additional reference samples are obtained based on an equation shown below:

the number of the plurality of first additional reference samples=the reference sample line index×a first ratio of a width of the current block and a height of the current block+an offset,

the number of the plurality of second additional reference samples=the reference sample line index×a second ratio of the width of the current block and the height of the current block+the offset.   [equation]

12. The device of claim 11 ,

wherein the offset is 1.

13. A non-transitory computer-readable medium storing a bitstream, the bitstream being decoded by a decoding method,

wherein the decoding method, comprising:

obtaining an index of intra prediction mode of a current block;

obtaining, a reference sample line index for the current block;

when the index of intra prediction mode is greater than or equal to 34 and an angle of the intra prediction mode mapped to the index of intra prediction mode is greater than or equal to 0, generating a plurality of first reference samples and a plurality of first additional reference samples based on a reconstructed upper block adjacent to the current block; and

when the index of intra prediction mode is less than 34 and the angle of the intra prediction mode mapped to the index of intra prediction mode is greater than or equal to 0, generating a plurality of second reference samples and a plurality of second additional reference samples based on a reconstructed left block adjacent to the current block.

14. The non-transitory computer-readable medium storing a bitstream of claim 13 ,

wherein when the index of intra prediction mode is 34, the intra prediction mode is a diagonal mode.

15. The non-transitory computer-readable medium storing a bitstream of claim 13 ,

wherein the plurality of first reference samples are reconstructed samples positioned above the current block,

wherein the plurality of first additional reference samples are obtained by padding the rightmost sample among the plurality of first reference samples,

wherein the plurality of second reference samples are reconstructed samples positioned to the left of the current block,

wherein the plurality of second additional reference samples are obtained by padding the lowermost sample among the plurality of second reference samples.

16. The non-transitory computer-readable medium storing a bitstream of claim 13 ,

wherein

a number of the plurality of first additional reference samples and a number of the plurality of second additional reference samples are determined based on the reference sample line index or a ratio of a width of the current block and a height of the current block.

17. The non-transitory computer-readable medium storing a bitstream of claim 13 ,

wherein a number of the plurality of first additional reference samples and a number of the plurality of second additional reference samples are obtained based on an equation shown below:

the number of the plurality of first additional reference samples=the reference sample line index×a first ratio of a width of the current block and a height of the current block+an offset,

the number of the plurality of second additional reference samples=the reference sample line index×a second ratio of the width of the current block and the height of the current block+the offset.   [equation]

18. The non-transitory computer-readable medium storing a bitstream of claim 17 ,

wherein the offset is 1.

Assignments (4)
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE NAME PREVIOUSLY RECORDED ON REEL 062226 FRAME 0233. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Jan 9, 2023
From: WILUS INSTITUTE OF STANDARDS AND TECHNOLOGY INC.
To: SAMSUNG ELECTRONICS CO., LTD.
Reel/Frame 062335/0335 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 28, 2022
From: WILUS INSTITUTE OF STANDARDS AND TECHNOLOGY INC.
To: SAMSUNG ELECTRONICS CO. LTD.
Reel/Frame 062226/0233 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 7, 2022
From: HUMAX CO., LTD.
To: WILUS INSTITUTE OF STANDARDS AND TECHNOLOGY INC.
Reel/Frame 060456/0196 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 6, 2021
From: KIM, DONGCHEOL; KO, GEONJUNG; JUNG, JAEHONG; SON, JUHYUNG; KWAK, JINSAM
To: WILUS INSTITUTE OF ST AND ARDS AND TECHNOLOGY INC.; HUMAX CO., LTD.
Reel/Frame 055837/0406 →
Priority Claims (7)
KR 10-2018-0119455 · Oct 7, 2018 · national
KR 10-2018-0121530 · Oct 12, 2018 · national
KR 10-2018-0126681 · Oct 23, 2018 · national
KR 10-2018-0137708 · Nov 9, 2018 · national
KR 10-2019-0020241 · Feb 21, 2019 · national
KR 10-2019-0045260 · Apr 18, 2019 · national
KR 10-2019-0052222 · May 3, 2019 · national
Continuity (2)
Continuation PCTKR2019013137 · Oct 7, 2019
Related Publication 20210227213A1 · Jul 22, 2021
Cited By (2)
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