DocumentCode
821753
Title
Robust Transmission of Multistage Vector Quantized Sources Over Noisy Communication Channels—Applications to MELP Speech Codec
Author
Lahouti, Farshad ; Khandani, Amir K. ; Saleh, Aladdin
Author_Institution
Coll. of Eng., Tehran Univ.
Volume
55
Issue
6
fYear
2006
Firstpage
1805
Lastpage
1811
Abstract
Joint source-channel coding is an effective approach for the design of bandwidth efficient and error resilient communication systems with manageable complexity. An interesting research direction within this framework is the design of source decoders that exploit the residual redundancy for effective signal reconstruction at the receiver. Such source decoders are expected to replace the traditionally heuristic error concealment units that are elements of most multimedia communication systems. In this paper, we consider the reconstruction of signals encoded with a multistage vector quantizer (MSVQ) and transmitted over a noisy communications channel. The MSVQ maintains a moderate complexity and, due to its successive refinement feature, is a suitable choice for the design of layered (progressive) source codes. An approximate minimum mean squared error source decoder for MSVQ is presented, and its application to the reconstruction of the linear predictive coefficient (LPC) parameters in mixed excitation linear prediction (MELP) speech codec is analyzed. MELP is a low-rate standard speech codec suitable for bandwidth-limited communications and wireless applications. Numerical results demonstrate the effectiveness of the proposed schemes
Keywords
bandlimited communication; combined source-channel coding; decoding; least mean squares methods; linear predictive coding; signal reconstruction; speech codecs; vector quantisation; MELP speech codec; MSVQ; bandwidth-limited communication; joint source-channel coding; minimum mean squared error; mixed excitation linear prediction; multistage vector quantizer; noisy communication channels; signal reconstruction; source decoder; wireless applications; Bandwidth; Communication channels; Decoding; Multimedia communication; Multimedia systems; Redundancy; Robustness; Signal design; Signal reconstruction; Speech codecs; Error concealment; MELP; Markov model; joint source-channel coding; line spectral frequencies (LSFs); linear predictive coding (LPC); minimum mean squared error (MMSE) estimation; multistage vector quantization (MSVQ); residual redundancy; source decoding;
fLanguage
English
Journal_Title
Vehicular Technology, IEEE Transactions on
Publisher
ieee
ISSN
0018-9545
Type
jour
DOI
10.1109/TVT.2006.878722
Filename
4012535
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