DocumentCode
3559355
Title
Laplace Distribution Based Lagrangian Rate Distortion Optimization for Hybrid Video Coding
Author
Li, Xiang ; Oertel, Norbert ; Hutter, Andreas ; Kaup, Andr?©
Author_Institution
Siemens Corp. Technol., Munich
Volume
19
Issue
2
fYear
2009
Firstpage
193
Lastpage
205
Abstract
In today´s hybrid video coding, Rate-Distortion Optimization (RDO) plays a critical role. It aims at minimizing the distortion under a constraint on the rate. Currently, the most popular RDO algorithm for one-pass coding is the one recommended in the H.264/AVC reference software. It, or HR-lambda for convenience, is actually a kind of universal method which performs the optimization only according to the quantization process while ignoring the properties of input sequences. Intuitively, it is not efficient all the time and an adaptive scheme should be better. Therefore, a new algorithm Lap- lambda is presented in this paper. Based on the Laplace distribution of transformed residuals, the proposed Lap-lambda is able to adaptively optimize the input sequences so that the overall coding efficiency is improved. Cases which cannot be well captured by the proposed models are considered via escape methods. Comprehensive simulations verify that compared with HR-lambda , Lap-lambda shows a much better or similar performance in all scenarios. Particularly, significant gains of 1.79 dB and 1.60 dB in PSNR are obtained for slow sequences and B-frames, respectively.
Keywords
optimisation; quantisation (signal); video coding; H.264/AVC reference software; HR-lambda; Lap-lambda algorithm; Laplace distribution based Lagrangian rate distortion optimization; hybrid video coding; quantization process; Hybrid video coding; Lagrange multiplier selection; rate-distortion optimization (RDO);
fLanguage
English
Journal_Title
Circuits and Systems for Video Technology, IEEE Transactions on
Publisher
ieee
Conference_Location
12/9/2008 12:00:00 AM
ISSN
1051-8215
Type
jour
DOI
10.1109/TCSVT.2008.2009255
Filename
4703235
Link To Document