DocumentCode :
3225968
Title :
Noise-Shaped Predictive Coding for Multiple Descriptions of a Colored Gaussian Source
Author :
Kochman, Yuval ; Ostergaard, Jacob ; Zamir, Ram
Author_Institution :
Tel Aviv Univ., Tel Aviv
fYear :
2008
fDate :
25-27 March 2008
Firstpage :
362
Lastpage :
371
Abstract :
It was recently shown that the symmetric multiple-description (MD) quadratic rate-distortion function for memoryless Gaussian sources and two descriptions can be achieved by dithered delta-sigma quantization combined with memoryless entropy coding. In this paper, we generalize this result to stationary (colored) Gaussian sources by combining noise shaping and source prediction. We first propose a new representation for the test channel that realizes the MD rate-distortion function of a Gaussian source, both in the white and in the colored source case. We then show that this test channel can be materialized by embedding two source prediction loops, one for each description, within a common noise shaping loop. While the noise shaping loop controls the tradeoff between the side and the central distortions, the role of prediction (like in differential pulse code modulation) is to extract the source innovations from the reconstruction at each of the side decoders, and thus reduce the coding rate. Finally, we show that this scheme achieves the MD rate-distortion function at all resolutions and all side-to-central distortion ratios, in the limit of high dimensional quantization.
Keywords :
Gaussian noise; rate distortion theory; source coding; MD rate-distortion function; coding rate; multiple description coding; noise shaping; noise-shaped predictive coding; source prediction loops; stationary colored Gaussian sources; Centralized control; Colored noise; Entropy coding; Gaussian noise; Materials testing; Noise shaping; Predictive coding; Pulse modulation; Quantization; Rate-distortion; Delta-Sigma quantization; Multiple Descriptions; Predictive coding;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Data Compression Conference, 2008. DCC 2008
Conference_Location :
Snowbird, UT
ISSN :
1068-0314
Print_ISBN :
978-0-7695-3121-2
Type :
conf
DOI :
10.1109/DCC.2008.76
Filename :
4483314
Link To Document :
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