DocumentCode :
793955
Title :
Transactions Papers source-optimized channel coding for digital transmission channels
Author :
Heinen, Stefan ; Vary, Peter
Author_Institution :
Infineon Technol. AG Dev. Center Dusseldorf, Germany
Volume :
53
Issue :
4
fYear :
2005
fDate :
4/1/2005 12:00:00 AM
Firstpage :
592
Lastpage :
600
Abstract :
We present a new class of nonlinear block codes called source-optimized channel codes (SOCCs), which are particularly designed for parametric source encoding of speech, audio, and video. In contrast to conventional channel codes, the new codes are not optimized for minimizing residual bit-error rate, but maximizing the signal-to-noise ratio of transmitted source codec parameters. The decoding of SOCCs is not based on bit-error correction, but on parameter estimation. We compare SOCCs with other approaches to joint source/channel coding such as channel-optimized vector quantization, channel-constrained vector quantization, unequal error protection, and source-controlled channel decoding. In terms of performance, SOCCs show better robustness if under channel mismatch conditions. For real-world applications, SOCCs are attractive, since the separation of source and channel codec is preserved.
Keywords :
audio coding; block codes; combined source-channel coding; error statistics; optimisation; parameter estimation; speech coding; vector quantisation; video coding; audio coding; bit-error correction; channel codec; channel-constrained vector quantization; channel-optimized vector quantization; digital transmission channel; joint source channel coding; nonlinear block code; parameter estimation; parametric source encoding; residual bit-error rate; signal-to-noise ratio; source codec parameter; source-controlled channel decoding; source-optimized channel coding; speech coding; unequal error protection; video coding; Bit error rate; Block codes; Channel coding; Codecs; Decoding; Error correction codes; Parameter estimation; Signal to noise ratio; Speech coding; Vector quantization; Joint source-channel coding; nonlinear block codes; parameter estimation;
fLanguage :
English
Journal_Title :
Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
0090-6778
Type :
jour
DOI :
10.1109/TCOMM.2005.844936
Filename :
1425743
Link To Document :
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