IP Library › Granted Patent US 11,272,216
Granted Patent B2
US 11,272,216 · App. 16/918,627 · Granted Mar 8, 2022

Method of decoding moving pictures in intra prediction

Inventors: Kwangje Kim (Seoul, KR); Hyunoh Oh (Gwacheon-si, KR)
Assignee: IBEX PT HOLDINGS CO., LTD.
H04N19/82H04N19/117H04N19/159H04N19/182H04N19/593H04N19/11H04N19/176
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Quick Facts
Patent No.
US 11,272,216
App. No.
16/918,627
Granted
Mar 8, 2022
Kind
B2
Abstract

A method for encoding an image includes determining an intra prediction mode of a current block; generating a prediction block of the current block according to the intra-prediction mode; generating a residual block by calculating a difference between the current block and the prediction block; transforming the residual block to generate a transform block; quantizing the transform block to generate a quantized block; and entropy-coding coefficients of the quantized block.

Claims (38)

1. A method for encoding an image, the method comprising:

determining an intra prediction mode of a current block;

generating a prediction block of the current block according to the intra prediction mode;

generating a residual block by calculating a difference between the current block and the prediction block;

transforming the residual block to generate a transform block;

quantizing the transform block to generate a quantized block; and

entropy-coding coefficients of the quantized block,

wherein the generating the prediction block of the current block according to the intra prediction mode includes:

generating reference pixels on an unavailable position if there exist unavailable reference pixels of the current block based on the intra prediction mode;

determining whether reference pixels of the current block are filtered or not based on the intra prediction mode and a block size of the current block; and

filtering the reference pixels of the current block using a filter if it is determined that the reference pixels of the current block are filtered,

wherein the reference pixels are adaptively filtered based on the block size of the current block,

wherein the filter is not applied if it is determined that the size of the current block is smaller than a first size,

wherein if a number of intra prediction modes to which the filter is applied is increased, it is determined that the size of the current block is larger than the first size and smaller than a second size,

wherein the filter is not applied to the intra prediction mode corresponding to a DC mode because the prediction block is generated using an average of the reference pixels, and

wherein the intra prediction mode is selected among a predetermined number of directional intra prediction modes and two non-directional intra prediction modes.

2. The method of claim 1 , wherein the two non-directional intra prediction modes are the DC mode and a planar mode.

3. The method of claim 1 , wherein if the selected intra prediction mode is a vertical mode, prediction pixels of the prediction block are changed using reference pixels other than upper pixels used for generating the prediction block.

4. The method of claim 1 , wherein if the selected intra prediction mode is a horizontal mode, prediction pixels of the prediction block are changed using reference pixels other than left pixels used for generating the prediction block.

5. A non-transitory recording medium which includes a bit stream decoded by an image decoding device, the bit stream being generated by dividing an image into a plurality of blocks and by performing intra prediction for a corresponding block and including:

information indicating an intra prediction mode group indicator and a prediction mode index of a current prediction block, and

information indicating one-dimensional (1D) quantized transform coefficients generated by scanning quantized transform coefficients of a quantized transform block,

wherein the image decoding device:

restores the intra prediction mode group indicator and the prediction mode index of the current prediction block and the 1D quantized transform coefficients from the bit stream,

generates the quantized transform block by inversely scanning the 1D quantized transform coefficients,

generates a transform block by inversely quantizing the quantized transform block,

generates a residual block by inversely transforming the transform block,

generates a prediction block of the current prediction block according to an intra prediction mode, and

generates an original block by adding the prediction block and the residual block,

wherein the image decoding device generates the prediction block by performing:

generating reference pixels on an unavailable position if there exist unavailable reference pixels of the current block;

determining whether reference pixels of the current block are filtered or not based on the intra prediction mode and a block size of the current block;

filtering the reference pixels of the current block using a filter if it is determined that the reference pixels of the current block are filtered,

wherein the reference pixels are adaptively filtered based on the block size of the current block,

wherein the filter is not applied if it is determined that the size of the current block is smaller than a first size,

wherein if a number of intra prediction modes to which the filter is applied is increased, it is determined that the size of the current block is larger than the first size and smaller than a second size,

wherein the filter is not applied to the intra prediction mode corresponding to a DC mode because the prediction block is generated using an average of the reference pixels, and

wherein the intra prediction mode is selected among a predetermined number of directional intra prediction modes and two non-directional intra prediction modes.

Priority Claims (1)
KR 10-2011-0030294 · Apr 1, 2011 · national
Continuity (6)
Continuation 16149491 · Oct 2, 2018
Continuation 15699455 · Sep 8, 2017
Continuation 14591477 · Jan 7, 2015
Continuation 13743161 · Jan 16, 2013
Continuation PCTKR2012001923 · Mar 16, 2012
Related Publication 20200336767A1 · Oct 22, 2020
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