DocumentCode :
1190300
Title :
On finite-state vector quantization for noisy channels
Author :
Yahampath, Pradeepa ; Pawlak, Mirek
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Manitoba, Winnipeg, Man., Canada
Volume :
52
Issue :
12
fYear :
2004
Firstpage :
2125
Lastpage :
2133
Abstract :
Finite-state vector quantization (FSVQ) over a noisy channel is studied. A major drawback of a finite-state decoder is its inability to track the encoder in the presence of channel noise. In order to overcome this problem, we propose a nontracking decoder which directly estimates the code vectors used by a finite-state encoder. The design of channel-matched finite-state vector quantizers for noisy channels, using an iterative scheme resembling the generalized Lloyd algorithm, is also investigated. Simulation results based on encoding a Gauss-Markov source over a memoryless Gaussian channel show that the proposed decoder exhibits graceful degradation of performance with increasing channel noise, as compared with a finite-state decoder. Also, the channel-matched finite-state vector quantizers are shown to outperform channel-optimized vector quantizers having the same vector dimension and rate. However, the nontracking decoder used in the channel-matched finite-state quantizer has a higher computational complexity, compared with a channel-optimized vector-quantizer decoder. Thus, if they are allowed to have the same overall complexity (encoding and decoding), the channel-optimized vector quantizer can use a longer encoding delay and achieve similar or better performance. Finally, an example of using the channel-matched finite-state quantizer as a backward-adaptive quantizer for nonstationary signals is also presented.
Keywords :
Gaussian channels; Markov processes; combined source-channel coding; computational complexity; iterative decoding; optimisation; vector quantisation; Gauss-Markov source; Llyod algorithm; backward-adaptive quantizer; channel-matched vector quantizer; channel-optimized vector quantizer; computational complexity; finite-state decoder; finite-state vector quantization; iterative scheme; memoryless Gaussian channel; noisy channel; nonstationary signal; Algorithm design and analysis; Computational complexity; Degradation; Delay; Gaussian channels; Gaussian noise; Iterative algorithms; Iterative decoding; Speech; Vector quantization;
fLanguage :
English
Journal_Title :
Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
0090-6778
Type :
jour
DOI :
10.1109/TCOMM.2004.838736
Filename :
1369625
Link To Document :
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