DocumentCode
930434
Title
Wyner-Ziv coding of video: an error-resilient compression framework
Author
Sehgal, Anshul ; Jagmohan, Ashish ; Ahuja, Narendra
Author_Institution
Beckman Inst., Illinois Univ., Urbana, IL, USA
Volume
6
Issue
2
fYear
2004
fDate
4/1/2004 12:00:00 AM
Firstpage
249
Lastpage
258
Abstract
This paper addresses the problem of video coding in a joint source-channel setting. In particular, we propose a video encoding algorithm that prevents the indefinite propagation of errors in predictively encoded video-a problem that has received considerable attention over the last decade. This is accomplished by periodically transmitting a small amount of additional information, termed coset information, to the decoder, as opposed to the popular approach of periodic insertion of intra-coded frames. Perhaps surprisingly, the coset information is capable of correcting for errors, without the encoder having a precise knowledge of the lost packets that resulted in the errors. In the context of real-time transmission, the proposed approach entails a minimal loss in performance over conventional encoding in the absence of channel losses, while simultaneously allowing error recovery in the event of channel losses. We demonstrate the efficacy of the proposed approach through experimental evaluation. In particular, the performance of the proposed framework is 3-4 dB superior to the conventional approach of periodic insertion of intra-coded frames, and 1.5-2 dB away from an ideal system, with infinite decoding delay, operating at Shannon capacity.
Keywords
video coding; Shannon capacity; Wyner-Ziv video coding; channel losses; coset information; decoder; error recovery; error-resilient compression framework; infinite decoding delay; intra-coded frames; joint source-channel setting; minimal performance loss; predictively encoded video; real-time transmission; video encoding algorithm; Automatic repeat request; Decoding; Delay; Error correction; Forward error correction; Predictive coding; Propagation losses; Protection; Streaming media; Video compression;
fLanguage
English
Journal_Title
Multimedia, IEEE Transactions on
Publisher
ieee
ISSN
1520-9210
Type
jour
DOI
10.1109/TMM.2003.822995
Filename
1275455
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