DocumentCode :
1196154
Title :
Efficient rate allocation for progressive image transmission via unequal error protection over finite-state Markov channels
Author :
Liu, Zhongmin ; Zhao, Minyi ; Xiong, Zixiang
Author_Institution :
Dept. of Electr. Eng., Texas A&M Univ., College Station, TX, USA
Volume :
53
Issue :
11
fYear :
2005
Firstpage :
4330
Lastpage :
4338
Abstract :
This paper proposes a unified framework for addressing progressive image transmission over noisy channels based on the finite-state Markov channel (FSMC) model. FSMC models are simple yet general enough to model binary symmetric, Gilbert-Elliott, and fading channels. They allow error sequence analysis that facilitates quantifying the statistical characteristics of the embedded bitstreams transmitted over FSMC in closed form. Using a concatenation of rate-compatible puncturing convolutional code and cyclic redundancy check code for error protection, we use a concatenation of rate-compatible punctured convolutional code and cyclic redundancy check code for error protection, which results in an unequal error protection (UEP) system, and find (sub-)optimal rate allocation solutions for our setup. By mapping fading channels to FSMCs, the JSCC problem is thus solved without the burden of simulations using an image-dependent lookup table. Fast algorithms are proposed to search for the optimal UEP. Experiments on embedded image bitstreams over FSMCs confirm our analytical results.
Keywords :
Markov processes; convolutional codes; cyclic redundancy check codes; fading channels; image coding; mobile radio; statistical analysis; visual communication; Gilbert-Elliott channels; binary symmetric channels; cyclic redundancy check code; embedded image bitstreams; fading channels; finite-state Markov channels; image-dependent lookup table; noisy channels; progressive image transmission; rate-compatible puncturing convolutional code; statistical characteristics; suboptimal rate allocation solutions; unequal error protection; Convolutional codes; Cyclic redundancy check; Cyclic redundancy check codes; Decoding; Error analysis; Error correction codes; Fading; Image communication; Protection; Source coding; Finite-state Markov model; joint source-channel coding; progressive image transmission; unequal error protection;
fLanguage :
English
Journal_Title :
Signal Processing, IEEE Transactions on
Publisher :
ieee
ISSN :
1053-587X
Type :
jour
DOI :
10.1109/TSP.2005.857058
Filename :
1519699
Link To Document :
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