Title :
Zero-delay joint source-channel coding for the Gaussian Wyner-Ziv problem
Author :
Chen, Xuechen ; Tuncel, Ertem
Author_Institution :
Univ. of California, Riverside, CA, USA
fDate :
July 31 2011-Aug. 5 2011
Abstract :
We study the zero-delay joint source-channel coding problem of transmitting a Gaussian source over a Gaussian channel in the presence of side information known only to the receiver. To achieve zero-delay, after applying scalar quantization to the source, the properly scaled analog information, namely the quantization error, is superimposed on the scaled digital information, i.e., the quantized source, and then transmitted. At the decoder, two decoding schemes are proposed, both of which estimate digital component first, followed by the analog component. It is shown that both schemes, when optimized over all related parameters, are superior to pure analog transmission for high enough correlation between source and side information. The robustness of one of the proposed HDA schemes against varying channel and side information conditions is also compared with that of the purely analog scheme.
Keywords :
channel coding; codecs; decoding; source coding; Gaussian Wyner-Ziv problem; HDA schemes; analog component; analog transmission; decoder; decoding; digital component; scalar quantization; scaled digital information; zero-delay joint source-channel coding; Channel coding; Correlation; Decoding; Joints; Quantization; Signal to noise ratio;
Conference_Titel :
Information Theory Proceedings (ISIT), 2011 IEEE International Symposium on
Conference_Location :
St. Petersburg
Print_ISBN :
978-1-4577-0596-0
Electronic_ISBN :
2157-8095
DOI :
10.1109/ISIT.2011.6034113