IP Library Granted Patent US 8,792,741
Granted Patent B2
US 8,792,741 · App. 12/855,884 · Granted Jul 29, 2014

Method and apparatus for encoding and decoding image by using large transformation unit

Inventors: Tammy Lee (Seoul, KR); Woo-jin Han (Suwon-si, KR); Jianle Chen (Suwon-si, KR); Hae-kyung Jung (Seoul, KR)
Assignee: Samsung Electronics Co., Ltd.
H04N19/00781H04N19/00278H04N19/00969H04N19/0003H04N19/00084H04N19/00884H04N19/00072
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Quick Facts
Patent No.
US 8,792,741
App. No.
12/855,884
Granted
Jul 29, 2014
Kind
B2
Abstract

Disclosed are an image encoding method and apparatus for encoding an image by grouping a plurality of adjacent prediction units into a transformation unit and transforming the plurality of adjacent prediction into a frequency domain, and an image decoding method and apparatus for decoding an image encoded by using the image encoding method and apparatus.

Claims (29)

1. An image encoding apparatus comprising:

a transformer which sets a transformation unit in a coding unit, wherein a size of the transformation unit is determined independently from a size of at least one prediction unit in the coding unit, performs transformation on the transformation unit to generate transformation coefficients;

a quantization unit which quantizes the transformation coefficients of the transformation unit; and

an entropy encoder which entropy encodes the quantized transformation coefficients,

wherein:

an image is split into a plurality of maximum coding units, according to information about a maximum size of the coding unit,

the maximum coding unit is hierarchically into one or more coding units of depth including at least one of a current depth and a lower depth, according split information,

when the split information indicates a split for the current depth, the coding unit of the current depth is split into four rectangular coding units of a lower depth, independently from neighboring coding units, and

when the split information indicates a non-split of the lower depth, the at least one prediction unit is obtained from the coding unit of the lower depth.

2. An image decoding method comprising:

performing entropy decoding to generate quantized transformation coefficients of a transformation unit in a coding unit;

inverse quantizing the quantized transformation coefficients to generate transformation coefficients of the transformation unit; and

inverse transforming the transformation coefficients to generate residual components of the transformation unit,

wherein a size of the transformation unit is determined independently from a size of the at least one prediction unit in the coding unit,

an image is split into a plurality of maximum coding units, according to information about a maximum size of the coding unit,

the maximum coding unit is hierarchically into one or more coding units of depth including at least one of a current depth and a lower depth, according to split information,

when the split information indicates a split for the current depth, the coding unit of the current depth is split into four rectangular coding units of a lower depth, independently from neighboring coding units, and

when the split information indicates a non-split of the lower depth, the at least one prediction unit is obtained from the coding unit of the lower depth.

3. The image decoding method of claim 2 , wherein a size of the maximum coding unit is set as one of 16×16, 32×32 and 64×64, a size of the coding units is determined as one of 8×8, 16×16, 32×32 and 64×64, and the prediction units are obtained by splitting at least one of a height and a width of the coding unit.

4. An image decoding apparatus comprising:

an entropy decoder which performs entropy decoding to generate quantized transformation coefficients of a transformation unit in a coding unit;

an inverse-quantization unit which inverse quantizes the quantized transformation coefficients to generate transformation coefficients of the transformation unit; and

an inverse-transformer which inverse transforms the transformation coefficients to generate residual components of the transformation unit,

wherein a size of the transformation unit in a coding unit is determined independently from a size of the at least one prediction unit in the coding unit,

an image is split into a plurality of maximum coding units, according to information about a maximum size of the coding unit,

the maximum coding unit is hierarchically into one or more coding units of depth including at least one of a current depth and a lower depth, according to split information,

when the split information indicates a split for the current depth, the coding unit of the current depth is split into four rectangular coding units of a lower depth, independently from neighboring coding units, and

when the split information indicates a non-split of the lower depth, the coding unit of the lower depth is split into the at least one prediction unit.

5. A non-transitory computer readable recording medium having recorded thereon a program for executing the method of claim 2 .

Assignments (2)
CORRECTIVE ASSIGNMENT TO CORRECT THE TITLE SHOULD READ "METHOD AND APPARATUS FOR ENCODING AND DECODING IMAGE BY USING LARGE TRANSFORMATION UNIT PREVIOUSLY RECORDED ON REEL 024833 FRAME 0990. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT OF ASSIGNOR'S INTEREST. Recorded May 3, 2012
From: LEE, TAMMY; HAN, WOO-JIN; CHEN, JIANLE; JUNG, HAE-KYUNG
To: SAMSUNG ELECTRONICS CO., LTD.
Reel/Frame 028154/0520 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 13, 2010
From: LEE, TAMMY; HAN, WOO-JIN; CHEN, JIANLE; JUNG, HAE-KYUNG
To: SAMSUNG ELECTRONICS CO., LTD.
Reel/Frame 024833/0990 →
Priority Claims (1)
KR 10-2009-0074895 · Aug 13, 2009 · national
Continuity (1)
Related Publication 20110038554A1 · Feb 17, 2011