DocumentCode :
1085796
Title :
Efficient source decoding over memoryless noisy channels using higher order Markov models
Author :
Lahouti, Farshad ; Khandani, Amir K.
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Waterloo, Ont., Canada
Volume :
50
Issue :
9
fYear :
2004
Firstpage :
2103
Lastpage :
2118
Abstract :
Exploiting the residual redundancy in a source coder output stream during the decoding process has been proven to be a bandwidth-efficient way to combat noisy channel degradations. This redundancy can be employed to either assist the channel decoder for improved performance or design better source decoders. In this work, a family of solutions for the asymptotically optimum minimum mean-squared error (MMSE) reconstruction of a source over memoryless noisy channels is presented when the redundancy in the source encoder output stream is exploited in the form of a γ-order Markov model (γ≥1) and a delay of δ,δ>0, is allowed in the decoding process. It is demonstrated that the proposed solutions provide a wealth of tradeoffs between computational complexity and the memory requirements. A simplified MMSE decoder which is optimized to minimize the computational complexity is also presented. Considering the same problem setup, several other maximum a posteriori probability (MAP) symbol and sequence decoders are presented as well. Numerical results are presented which demonstrate the efficiency of the proposed algorithms.
Keywords :
AWGN channels; Markov processes; combined source-channel coding; decoding; least mean squares methods; maximum likelihood detection; memoryless systems; telecommunication channels; MAP; MMSE; Markov model; channel decoder; forward-backward recursion; joint source-channel coding; maximum a posteriori probability; memoryless noisy channel; noisy channel degradation; optimum minimum mean-squared error reconstruction; residual redundancy; sequence decoders; source coder; Channel coding; Computational complexity; Decoding; Delay; Error correction codes; Image reconstruction; Protection; Pulse modulation; Redundancy; Speech coding; Forward–backward recursion; MAP; MMSE; Markov sources; detection; estimation; joint source–channel coding; maximum a posteriori probability; minimum mean-squared error; residual redundancies; source decoding;
fLanguage :
English
Journal_Title :
Information Theory, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9448
Type :
jour
DOI :
10.1109/TIT.2004.833337
Filename :
1327810
Link To Document :
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