DocumentCode
903455
Title
Distributed Coding Using Punctured Quasi-Arithmetic Codes for Memory and Memoryless Sources
Author
Malinowski, Simon ; Artigas, Xavi ; Guillemot, Christine ; Torres, Luis
Author_Institution
IRISA/INRIA, Rennes, France
Volume
57
Issue
10
fYear
2009
Firstpage
4154
Lastpage
4158
Abstract
This correspondence considers the use of punctured quasi-arithmetic (QA) codes for the Slepian-Wolf problem. These entropy codes are defined by finite state machines for memoryless and first-order memory sources. Puncturing an entropy coded bit-stream leads to an ambiguity at the decoder side. The decoder makes use of a correlated version of the original message in order to remove this ambiguity. A complete distributed source coding (DSC) scheme based on QA encoding with side information at the decoder is presented, together with iterative structures based on QA codes. The proposed schemes are adapted to memoryless and first-order memory sources. Simulation results reveal that the proposed schemes are efficient in terms of decoding performance for short sequences compared to well-known DSC solutions using channel codes.
Keywords
arithmetic codes; decoding; entropy codes; finite state machines; source coding; Slepian-Wolf problem; decoding performance; distributed source coding; entropy codes; finite state machines; memoryless sources; punctured quasi-arithmetic codes; Arithmetic codes; distributed source coding; maximum likelihood decoding;
fLanguage
English
Journal_Title
Signal Processing, IEEE Transactions on
Publisher
ieee
ISSN
1053-587X
Type
jour
DOI
10.1109/TSP.2009.2023359
Filename
4957108
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