DocumentCode
1458
Title
High-speed rate estimation based on parallel processing for H.264/AVC CABAC encoder
Author
Wei Li ; Fuzheng Yang ; Guangliang Ren
Author_Institution
State Key Lab. of ISN, Xidian Univ., Xi´an, China
Volume
59
Issue
1
fYear
2013
fDate
Feb-13
Firstpage
237
Lastpage
243
Abstract
The advanced video codec of H.264/AVC has been extensively employed for data compression for efficient video storage or transmissions. However, its intensive computational complexity causes a bottleneck for its real-time applications. Simultaneously, the sequential operation in the normal encoding process is not favorable with regard to hardware implementations. In this paper, a high-speed and accurate bit-rate estimation scheme is proposed to skip the actual entropy engine of context-adaptive binary arithmetic coding (CABAC), which is useful for reducing the computational complexity and saving the encoding time in H.264/AVC rate distortion (RD) optimization for mode decision. The characteristics of syntax elements and the principle of CABAC are firstly analyzed. Then guided by the spirit of parallel processing, a novel algorithm is constructed to estimate the bit-rate in RD mode decision. The proposed method significantly accelerates the encoding process while well maintaining the video quality, and is well suited to hardware implementations due to its feature of parallel processing1.
Keywords
computational complexity; parallel processing; video coding; CABAC; H.264/AVC CABAC encoder; RD mode decision; accurate bit-rate estimation scheme; context-adaptive binary arithmetic coding; data compression; high-speed rate estimation; normal encoding process; parallel processing; sequential operation; syntax elements; the video quality; Context; Encoding; Estimation; Indexes; Parallel processing; Syntactics; Video coding; CABAC; mode decision; parallel processing; rate estimation;
fLanguage
English
Journal_Title
Consumer Electronics, IEEE Transactions on
Publisher
ieee
ISSN
0098-3063
Type
jour
DOI
10.1109/TCE.2013.6490265
Filename
6490265
Link To Document