Title :
Turbo cross decoding of multiple descriptions
Author :
Barros, João ; Hagenauer, Joachim ; Görtz, Norbert
Author_Institution :
Inst. for Commun. Eng., Munich Univ. of Technol., Munchen, Germany
Abstract :
The transmission of multimedia data over best-effort packet networks has motivated a strong research effort in the area of multiple description coding. While most contributions concentrate on the design of encoders for the erasure channel, this paper considers the transmission of multiple descriptions over a typical wireless link. Assuming that channel state information is available and that the reliability of each transmitted bit is known to the receiver, we present a soft-in/soft-out decoder for a new class of block codes derived from multiple description scalar quantization. The idea of cross decoding multiple descriptions using soft information, can be successfully extended to the concatenation of multiple description codes and convolutional codes. For this case, the application of the turbo principle yields an iterative decoding scheme, which makes use of the correlation between descriptions in a very effective way.
Keywords :
block codes; combined source-channel coding; concatenated codes; iterative decoding; multimedia communication; packet radio networks; turbo codes; best-effort packet radio networks; block codes; channel state information; concatenation; convolutional codes; cross decoding; erasure channel; iterative decoding; multimedia data; multiple description coding; multiple description scalar quantization; soft-in/soft-out decoder; turbo cross decoding; turbo principle; wireless link; Block codes; Channel state information; Convolutional codes; Data engineering; Fading; IP networks; Iterative decoding; Propagation losses; Quantization; Routing;
Conference_Titel :
Communications, 2002. ICC 2002. IEEE International Conference on
Print_ISBN :
0-7803-7400-2
DOI :
10.1109/ICC.2002.997080