DocumentCode
106950
Title
Effective CU Size Decision for HEVC Intracoding
Author
Liquan Shen ; Zhaoyang Zhang ; Zhi Liu
Author_Institution
Key Lab. of Adv. Display & Syst. Applic., Shanghai Univ., Shanghai, China
Volume
23
Issue
10
fYear
2014
fDate
Oct. 2014
Firstpage
4232
Lastpage
4241
Abstract
In high efficiency video coding (HEVC), the tree structured coding unit (CU) is adopted to allow recursive splitting into four equally sized blocks. At each depth level (or CU size), it enables up to 35 intraprediction modes, including a planar mode, a dc mode, and 33 directional modes. The intraprediction via exhaustive mode search exploited in the test model of HEVC (HM) effectively improves coding efficiency, but results in a very high computational complexity. In this paper, a fast CU size decision algorithm for HEVC intracoding is proposed to speed up the process by reducing the number of candidate CU sizes required to be checked for each treeblock. The novelty of the proposed algorithm lies in the following two aspects: 1) an early determination of CU size decision with adaptive thresholds is developed based on the texture homogeneity and 2) a novel bypass strategy for intraprediction on large CU size is proposed based on the combination of texture property and coding information from neighboring coded CUs. Experimental results show that the proposed effective CU size decision algorithm achieves a computational complexity reduction up to 67%, while incurring only 0.06-dB loss on peak signal-to-noise ratio or 1.08% increase on bit rate compared with that of the original coding in HM.
Keywords
computational complexity; video coding; bypass strategy; coding information; computational complexity; computational complexity reduction; dc mode; directional modes; exhaustive mode search; fast CU size decision algorithm; high efficiency video coding; intraprediction; intraprediction modes; loss 0.06 dB; peak signal-to-noise ratio; planar mode; recursive splitting; texture homogeneity; texture property; tree structured coding unit; Algorithm design and analysis; Computational complexity; Encoding; Image coding; Prediction algorithms; Video coding; CU size decision; HEVC; intra prediction; texture homogeneity;
fLanguage
English
Journal_Title
Image Processing, IEEE Transactions on
Publisher
ieee
ISSN
1057-7149
Type
jour
DOI
10.1109/TIP.2014.2341927
Filename
6862903
Link To Document