Title :
Soft-decoding based vector quantization for hidden-Markov channels
Author :
Yahampath, Pradeepa ; Pawlak, Mirek
Author_Institution :
Dept. of Electr. & Comput. Eng., Manitoba Univ., Winnipeg, Man., Canada
Abstract :
Summary form only given. Channel optimized vector quantization (COVQ) has received considerable attention as an approach to joint source-channel coding. COVQ for hidden Markov channels was studied, with application in wireless communication over fading channels. The optimal VQ decoding was considered for finite state channels when the channel state is not explicitly observed at the receiver. A hidden Markov model (HMM) with a continuous observation space is constructed for the channel by assuming both channel input and channel state are first-order Markov process. A recursive-decoding algorithm is derived for computing the minimum mean square error (MMSE) optimal estimate for the source vector, based on the observed channel output sequence. In simulation experiments, the performance of a communications system based on the proposed quantizer is investigated for a Gauss-Markov signal source and a frequency non-selective Rayleigh fading channel. The results indicate that for fading channels, proposed soft-decoding based COVQ can results in a substantial improvement of performance over detection based COVQ.
Keywords :
Rayleigh channels; channel coding; decoding; hidden Markov models; least mean squares methods; vector quantisation; COVQ; Gauss-Markov signal; HMM; MAP; MMSE; VQCO; channel optimized vector quantization; channel state; fading channels; first-order Markov process; hidden Markov model; hidden-Markov channels; maximum a posterior probability; minimum mean square error; soft-decoding; source-channel coding; wireless communication; Computational modeling; Decoding; Fading; Gaussian channels; Hidden Markov models; Markov processes; Mean square error methods; Recursive estimation; Vector quantization; Wireless communication;
Conference_Titel :
Data Compression Conference, 2003. Proceedings. DCC 2003
Print_ISBN :
0-7695-1896-6
DOI :
10.1109/DCC.2003.1194074