DocumentCode
1896077
Title
Reduced complexity maximum a posteriori decoding of variable-length codes
Author
Lamy, Catherine ; Pothier, Olivier
Author_Institution
Philips Recherche France, Suresnes, France
Volume
2
fYear
2001
fDate
2001
Firstpage
1410
Abstract
Previously, joint source channel techniques mostly focused on systems using fixed-length coding, even though variable-length coding (VLC) is widely used, particularly in video coding. Typically, VLC bit streams are made channel-robust through packetization and standard forward-error correction (FEC). However, when the channel conditions are fairly mild, FEC can reveal itself bandwidth-inefficient. A variable-rate extension of joint source channel decoding could thus potentially replace FEC under mild conditions or, for noisier channels, could be used together with FEC to ameliorate the coding rate, extending in both cases the range of situations under which the bit stream is adequately protected. We propose two reduced-complexity VLC soft-input decoding techniques, as well as a comparison with existing algorithms. Experimental results of a new proposed VLC decoding algorithm show very good performance and low complexity
Keywords
combined source-channel coding; computational complexity; forward error correction; maximum likelihood decoding; variable length codes; FEC; VLC bit streams; VLC decoding algorithm; channel conditions; fixed-length coding; forward-error correction; joint source channel coding; joint source channel decoding; noisy channels; reduced complexity MAP decoding; reduced complexity maximum a posteriori decoding; reduced-complexity VLC soft-input decoding; variable-length coding; video coding; Analytical models; Bit rate; Decoding; Dynamic programming; Forward error correction; Protection; Source coding; Streaming media; Video coding;
fLanguage
English
Publisher
ieee
Conference_Titel
Global Telecommunications Conference, 2001. GLOBECOM '01. IEEE
Conference_Location
San Antonio, TX
Print_ISBN
0-7803-7206-9
Type
conf
DOI
10.1109/GLOCOM.2001.965727
Filename
965727
Link To Document