Title :
COVQ for MAP hard-decision demodulated channels
Author :
Saffar, Hamidreza Ebrahimzadeh ; Alajaji, Fady ; Linder, Tamás
Author_Institution :
Dept. of Math. & Stat., Queen´´s Univ., Kingston, ON
fDate :
1/1/2009 12:00:00 AM
Abstract :
We design a channel optimized vector quantizer (COVQ) for symbol-by-symbol maximum a posteriori (MAP) hard-decision demodulated channels. The main objective is to exploit the non-uniformity of the indices representing the quantized source via the MAP decoder and iteratively optimize the overall discrete channel (at the symbol level) jointly with the quantizer. We consider memoryless Gaussian and Gauss-Markov sources transmitted over a binary phase-shift keying modulated Rayleigh fading channel. Our scheme has less encoding computational and storage complexity (particularly for noisy channel conditions) than both conventional and soft-decision COVQ systems, which use hard-decision and soft-decision maximum likelihood demodulation, respectively. Furthermore, it provides a notable signal-to-distortion ratio gain over the former system, and in some cases it matches or outperforms the latter one.
Keywords :
Gaussian processes; Markov processes; Rayleigh channels; channel coding; decoding; maximum likelihood estimation; Gauss-Markov sources; MAP decoder; binary phase-shift keying modulated Rayleigh fading channel; channel optimized vector quantizer; encoding computational; hard-decision demodulated channels; hard-decision maximum likelihood demodulation; joint source-channel coding; memoryless Gaussian sources; soft-decision maximum likelihood demodulation; storage complexity; symbol-by-symbol maximum a posteriori; Demodulation; Design optimization; Fading; Iterative decoding; Maximum likelihood decoding; Maximum likelihood detection; Phase modulation; Transmitters; Vector quantization; Wireless sensor networks; Joint source-channel coding, channel optimized vector quantization, MAP decoding, encoding computational and storage complexity, hard and soft-decision demodulation.;
Journal_Title :
Communications Letters, IEEE
DOI :
10.1109/LCOMM.2009.081457