IP Library › Granted Patent US 11,509,889
Granted Patent B2
US 11,509,889 · App. 17/104,706 · Granted Nov 22, 2022

Method and apparatus for processing video signal

Inventor: Bae Keun Lee (Gyeonggi-do, KR)
Assignee: KT CORPORATION
H04N19/105H04N19/132H04N19/159H04N19/176H04N19/593
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Quick Facts
Patent No.
US 11,509,889
App. No.
17/104,706
Granted
Nov 22, 2022
Kind
B2
Abstract

A method for decoding an image according to the present invention comprises the steps of: deriving an intra prediction mode of a current block; and changing the intra prediction mode to a wide angle intra prediction mode when the intra prediction mode is less than or equal to a threshold value and the current block is a non-square having a width greater than a height.

Claims (45)

1. A method of decoding an image with a decoding apparatus, comprising:

deriving an intra prediction mode of a current block in the image, wherein the intra prediction mode is derived from a fixed number of intra prediction modes which including a Planar mode, a DC mode, and a plurality of directional modes; and

determining reference samples for intra prediction of the current block,

wherein when the intra prediction mode of the current block is one of the directional modes, a prediction sample of the current block is obtained based on

a first reference sample located on an angular line of the intra prediction mode from the prediction sample,

wherein when it is determined to extend the intra prediction mode of the current block bi-directionally, the prediction sample is modified based on a weighted sum of the prediction sample and a second reference sample,

wherein a position of the second reference sample for the weight sum is determined based on a value resulting from adding a predetermined offset to an x-coordinate or a y-coordinate of the prediction sample, the predetermined offset being adaptively determined based on an angle of the intra prediction mode of the current block,

wherein whether to extend the intra prediction mode of the current block bi-directionally is determined by comparing a size of the current block with a threshold value,

wherein extending the intra prediction mode of the current block bi-directionally is allowed only when both a width and a height of the current block are greater than or equal to the threshold value,

wherein the weighted sum is performed by assigning a first weight to the prediction sample and assigning a second weight to the second reference sample, and

wherein at least one of the first weight and the second weight is determined based on a position of the prediction sample and a variable derived based on the size of the current block.

2. The method of claim 1 , wherein when it is determined to extend the intra prediction mode of the current block bi-directionally, prediction samples included in a first region in the current block are modified and prediction samples included in a second region in the current block are output as they are, and

wherein sizes of the first region and the second region are adaptively determined based on the size of the current block and an angle of the intra prediction mode of the current block.

3. The method of claim 1 ,

wherein at least one of the first weight and the second weight is determined further based on an angle of the intra prediction mode of the current block.

4. The method of claim 1 , wherein the modified prediction sample is obtained by shifting a value, obtained by the weighted sum, by a variable derived based on the size of the current block.

5. A method of encoding an image with an encoding apparatus, comprising:

obtaining a prediction block of a current block in the image;

obtaining a residual block of the current block based on an original block of the current block and the prediction block; and

encoding the residual block to generate a bitstream,

wherein an intra prediction mode of the current block is determined from a fixed number of intra prediction modes which

including a Planar mode, a DC mode, and a plurality of directional modes,

wherein when the intra prediction mode of the current block is one of the directional modes, a prediction sample of the current block is obtained

by a first reference sample located on an angular line of the intra prediction mode,

wherein when it is determined to extend the intra prediction mode of the current block bi-directionally, the prediction sample is modified by a weighted sum of the prediction sample and a second reference sample,

wherein a position of the second reference sample for the weighted sum is determined based on a value resulting from adding a predetermined offset to an x-coordinate or a y-coordinate of the prediction sample, the predetermined offset being adaptively determined based on an angle of the intra prediction mode of the current block,

wherein whether to extend the intra prediction mode of the current block bi-directionally is determined by comparing a size of the current block with a threshold value,

wherein extending the intra prediction mode of the current block bi-directionally is allowed only when both a width and a height of the current block are greater than or equal to the threshold value,

wherein the weighted sum is performed by assigning a first weight to the prediction sample and assigning a second weight to the second reference sample, and

wherein at least one of the first weight and the second weight is determined based on a position of the prediction sample and a variable derived based on the size of the current block.

6. A non-transitory computer-readable medium for storing compressed data associated with a video signal, the compressed data comprising:

a data regarding

a residual block of a current block,

wherein the current block is reconstructed based on the residual block and a prediction block of the current block,

wherein the prediction block is obtained based on an intra prediction mode of the current block,

wherein the intra prediction mode of the current block is determined from a fixed number of intra prediction modes

which including a Planar mode, a DC mode, and a plurality of directional modes,

wherein when the intra prediction mode of the current block is one of the directional modes,

a prediction sample of the current block is obtained by a first reference sample located on an angular line of the intra prediction mode from the prediction sample,

wherein when it is determined to extend the intra prediction mode of the current block bi-directionally, the prediction sample is modified by a weighted sum of the prediction sample and a second reference sample,

wherein a position of the second reference sample for the weighted sum is determined based on a value resulting from adding a predetermined offset to an x-coordinate or a y-coordinate of the prediction sample, the predetermined offset being adaptively determined based on an angle of the intra prediction mode of the current block,

wherein whether to extend the intra prediction mode of the current block bi-directionally is determined by comparing a size of the current block with a threshold value,

wherein extending the intra prediction mode of the current block bi-directionally is allowed only when both a width and a height of the current block are greater than the threshold value,

wherein the weighted sum is performed by assigning a first weight to the prediction sample and assigning a second weight to the second reference sample, and

wherein at least one of the first weight and the second weight is determined based on a position of the prediction sample and a variable derived based on the size of the current block.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 25, 2020
From: LEE, BAE KEUN
To: KT CORPORATION
Reel/Frame 054525/0826 →
Priority Claims (1)
KR 10-2018-0073733 · Jun 27, 2018 · national
Continuity (2)
Division 17057817
Related Publication 20210092362A1 · Mar 25, 2021
Cited By (1)
US 12,225,191