Title :
Iterative Source-Channel Decoding With Markov Random Field Source Models
Author :
Kliewer, Jorg ; Goertz, Norbert ; Mertins, Alfred
Author_Institution :
Dept. of Electr. Eng., Notre Dame Univ., IN
Abstract :
We propose a joint source-channel decoding approach for multidimensional correlated source signals. A Markov random field (MRF) source model is used which exemplarily considers the residual spatial correlations in an image signal after source encoding. Furthermore, the MRF parameters are selected via an analysis based on extrinsic information transfer charts. Due to the link between MRFs and the Gibbs distribution, the resulting soft-input soft-output (SISO) source decoder can be implemented with very low complexity. We prove that the inclusion of a high-rate block code after the quantization stage allows the MRF-based decoder to yield the maximum average extrinsic information. When channel codes are used for additional error protection the MRF-based SISO source decoder can be used as the outer constituent decoder in an iterative source-channel decoding scheme. Considering an example of a simple image transmission system we show that iterative decoding can be successfully employed for recovering the image data, especially when the channel is heavily corrupted
Keywords :
Markov processes; block codes; combined source-channel coding; image coding; iterative decoding; quantisation (signal); visual communication; Gibbs distribution; MRF-based SISO source decoder; Markov random field source models; channel code; extrinsic information transfer charts; high-rate block code; image data recovery; image signal; image transmission system; iterative source-channel decoding; joint source-channel decoding; maximum average extrinsic information; multidimensional correlated source signals; outer constituent decoder; quantization stage; residual spatial correlations; soft-input soft-output source decoder; source encoding; Bayesian methods; Delay; Image coding; Image communication; Information analysis; Iterative decoding; Markov random fields; Multidimensional systems; Protection; Redundancy; EXIT charts; Markov random fields; iterative source-channel decoding; joint source-channel coding;
Journal_Title :
Signal Processing, IEEE Transactions on
DOI :
10.1109/TSP.2006.879330