DocumentCode
1043236
Title
Advances in Recursive Per-Pixel End-to-End Distortion Estimation for Robust Video Coding in H.264/AVC
Author
Hua Yang ; Rose, K.
Author_Institution
California Univ., Santa Barbara
Volume
17
Issue
7
fYear
2007
fDate
7/1/2007 12:00:00 AM
Firstpage
845
Lastpage
856
Abstract
This paper is focused on expanding the applicability of the recursive optimal per-pixel estimate (ROPE) of end-to-end distortion, to the H.264/AVC standard. One open question involves the complexity of cross-correlation terms that appear in the case of subpixel prediction and other pixel filtering operations. Several efficient model-based solutions are proposed. Another open question involves the largely ignored effects of rounding operations, whose cumulative impact may seriously degrade the estimate accuracy. Two approaches are proposed for rounding error compensation: one appeals to the maximum entropy principle, while a low complexity alternative is based on quantization theoretic approximations. The former effectively estimates the distribution of the decoder reconstruction, thereby significantly broadening the applicability of ROPE to all additive distortion measures. Simulation results for H.264/AVC with 1/4-pel prediction show that the proposed ROPE extensions achieve fairly high estimation accuracy, while maintaining low complexity. Another set of results demonstrates the level of overall coding gains achievable by exploiting such improved end-to-end distortion estimation.
Keywords
filtering theory; maximum entropy methods; video coding; H.264/AVC; decoder reconstruction; end-to-end distortion estimation; maximum entropy principle; pixel filtering; recursive optimal per-pixel estimate; robust video coding; rounding error compensation; Automatic voltage control; Decoding; Degradation; Entropy; Filtering; Quantization; Recursive estimation; Robustness; Roundoff errors; Video coding; Coding mode selection; end-to-end distortion; error resilience; 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.2007.897116
Filename
4265640
Link To Document