IP Library Granted Patent US 10,368,101
Granted Patent B2
US 10,368,101 · App. 15/887,001 · Granted Jul 30, 2019

Method and apparatus for image encoding/decoding

Inventors: Byeung Woo Jeon (Seongnam-si, KR); Kwang Hyun Won (Bucheon-si, KR)
Assignee: Research & Business Foundation Sungkyunkwan University
H04N19/61H04N19/12H04N19/14H04N19/154H04N19/157H04N19/176H04N19/625H04N19/91
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Quick Facts
Patent No.
US 10,368,101
App. No.
15/887,001
Granted
Jul 30, 2019
Kind
B2
Abstract

Disclosed are a method and an apparatus for image encoding/decoding. The method for image decoding includes comparing whether a size of a current transform block and a size of a smallest transform block (smallest transform unit (STU)) are the same as each other, and decoding information indicating whether transformation is performed on the current transform block and determining whether to perform inverse transformation on the current transform block based on the decoded information indicating whether the transformation is performed when the size of the current transform block and the size of a smallest transform block are the same as each other.

Claims (50)

1. A method of decoding an image, comprising:

generating a prediction block for a current block;

receiving information of a block size, wherein the information of the block size is determined by an encoder, and wherein whether a skip of a transform process is applicable is determined based on a comparison of the information of the block size with a current block size;

decoding information indicating whether the skip of the transform process is applied, in response to the comparison of the information of the block size with the current block size representing that the skip of the transform process is applicable;

determining whether to perform an inverse transform on the current block based on the decoded information indicating whether the skip of the transform process is applied;

performing the inverse transform on the current block to generate a residual block for the current block; and

reconstructing the current block based on the prediction block and the residual block.

2. The method of claim 1 , wherein in response to the decoded information indicating whether the skip of the transform process is applied indicating that the transform process is not performed, the inverse transform on the current block is skipped.

3. The method of claim 1 , wherein in response to the decoded information indicating whether the skip of the transform process is applied or not indicating that the transform process is performed, the inverse transform on the current block is performed.

4. The method of claim 1 , wherein in response to a value of transform_skip_flag being 1, the transform process is not performed and is skipped on the current block, and in response to the value of transform_skip_flag being 0, the transform process is performed on the current block.

5. The method of claim 4 , wherein the information indicating whether the skip of the transform process is applied is a flag indicating whether to perform the inverse transform on the current block based on the information of the block size.

6. The method of claim 1 , further comprising performing an inverse transform on the current block according to a size of the current block, in response to a size of the current block satisfying a condition in which the skip of the transform process is not applied.

7. The method of claim 6 , the skip of the transform process is applied when the current block size is larger than 4×4 pixels.

8. An apparatus to decode an image, comprising:

at least a processor configured to

generate a prediction block for a current block,

decode information of a block size and information indicating whether a skip of a transform process is applied, wherein the information of the block size is determined by an encoder, and wherein whether the skip of the transform process is applicable is determined based on a comparison of the information of the block size with a current block size,

determine whether to perform an inverse transform on the current block based on the decoded information indicating whether the skip of the transform process is applied,

perform the inverse transform on the current block to generate a residual block for the current block, and

reconstruct the current block based on the prediction block and the residual block.

9. The apparatus of claim 8 , the skip of the transform process is applied when the current block size is larger than 4×4 pixels.

10. A method of encoding an image, comprising:

generating a prediction block for a current block;

generating a residual block for the current block based on the prediction block;

encoding the residual block;

decoding the encoded residual block; and

reconstructing the current block based on the prediction block and the decoded residual block,

wherein the encoding of the residual block comprises

determining information of a block size, wherein whether a skip of a transform process is applicable is determined based on the information of the block size compared with a current block size,

determining whether to apply the skip of the transform process on the current block based on a comparison of the information of the block size with a current block size, and

performing a transform on the current block to encode the residual block.

11. The method of claim 10 , further comprising encoding information indicating whether the skip of the transform process is applied to the current block.

12. The method of claim 10 , wherein in response to a value of transform_skip_flag being 1, the transform process is not performed and is skipped on the current block, and in response to the value of transform_skip_flag being 0, the transform process is performed on the current block.

13. The method of claim 11 , wherein in response to a determination that the skip of the transform process is applied to the current block, the information indicating whether the skip of the transform process is applied to the current block indicates that the transform on the current block is skipped.

14. The method of claim 13 , further comprising performing the transform on the current block according to a size of the current block, in response to a size of the current block satisfying a condition in which the skip of the transform process is not applied.

15. The method of claim 11 , wherein in response to a determination that that the skip of the transform process is not applied to the current block, the information indicating whether the skip of the transform process is applied to the current block indicates that the transform on the current block is performed.

16. The method of claim 12 , wherein information indicating whether the skip of the transform process is applied is a flag indicating whether to perform the transform on the current block based on the information of the block size.

17. The method of claim 16 , wherein the skip of the transform process is applied when the current block size is larger than 4×4 pixels.

18. An apparatus to encode an image, comprising:

at least a processor, configured to

generate a prediction block for a current block,

generate a residual block for the current block based on the prediction block,

encode the residual block,

decode the encoded residual block, and

reconstruct the current block based on the prediction block and the decoded residual block,

wherein the encoding of the residual block comprises

performing a transform on the current block based on information indicating whether a skip of a transform process is applied, and

encoding information of a block size and the information indicating whether the skip of the transform process is applied,

wherein whether the skip of the transform process is applicable is determined based on a comparison of the information of the block size with a current block size.

19. The apparatus of claim 18 , wherein the skip of the transform process is applied when the current block size is larger than 4×4 pixels.

Priority Claims (2)
KR 10-2013-0022145 · Feb 28, 2013 · national
KR 10-2013-0024978 · Mar 8, 2013 · national
Continuity (3)
Continuation 14990608 · Jan 7, 2016
Continuation 14191976 · Feb 27, 2014
Related Publication 20180160145A1 · Jun 7, 2018
Cited By (1)
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