DocumentCode :
1379939
Title :
Improved Video Compression Efficiency Through Flexible Unit Representation and Corresponding Extension of Coding Tools
Author :
Han, Woo-Jin ; Min, Junghye ; Kim, Il-Koo ; Alshina, Elena ; Alshin, Alexander ; Lee, Tammy ; Chen, Jianle ; Seregin, Vadim ; Lee, Sunil ; Hong, Yoon Mi ; Cheon, Min-Su ; Shlyakhov, Nikolay ; McCann, Ken ; Davies, Thomas ; Park, Jeong-Hoon
Author_Institution :
Digital Media & Commun. R&D Center, Samsung Electron., Suwon, South Korea
Volume :
20
Issue :
12
fYear :
2010
Firstpage :
1709
Lastpage :
1720
Abstract :
This paper proposes a novel video compression scheme based on a highly flexible hierarchy of unit representation which includes three block concepts: coding unit (CU), prediction unit (PU), and transform unit (TU). This separation of the block structure into three different concepts allows each to be optimized according to its role; the CU is a macroblock-like unit which supports region splitting in a manner similar to a conventional quadtree, the PU supports nonsquare motion partition shapes for motion compensation, while the TU allows the transform size to be defined independently from the PU. Several other coding tools are extended to arbitrary unit size to maintain consistency with the proposed design, e.g., transform size is extended up to 64 × 64 and intraprediction is designed to support an arbitrary number of angles for variable block sizes. Other novel techniques such as a new noncascading interpolation Alter design allowing arbitrary motion accuracy and a leaky prediction technique using both open-loop and closed-loop predictors are also introduced. The video codec described in this paper was a candidate in the competitive phase of the high-efficiency video coding (HEVC) standardization work. Compared to H.264/AVC, it demonstrated bit rate reductions of around 40% based on objective measures and around 60% based on subjective testing with 1080 p sequences. It has been partially adopted into the first standardization model of the collaborative phase of the HEVC effort.
Keywords :
data compression; video codecs; video coding; CU; H.264-AVC; HEVC standardization work; PU; TU; closed-loop predictors; coding tools; coding unit; flexible unit representation; high-efficiency video coding standardization work; macroblock-like unit; motion compensation; noncascading interpolation Alter design; nonsquare motion partition shapes; open-loop predictors; prediction unit; transform unit; video codec; video compression efficiency; Accuracy; Automatic voltage control; Encoding; Interpolation; Transforms; Video compression; Flexible unit representation; HEVC; video coding;
fLanguage :
English
Journal_Title :
Circuits and Systems for Video Technology, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8215
Type :
jour
DOI :
10.1109/TCSVT.2010.2092612
Filename :
5638199
Link To Document :
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