DocumentCode
1938771
Title
Analysis of optimal filter banks for multiple description coding
Author
Dragotti, Pier Luigi ; Servetto, Sergio D. ; Vetterli, Martin
Author_Institution
Lab. de Commun. Audiovisuelles, Ecole Polytech. Federale de Lausanne, Switzerland
fYear
2000
fDate
2000
Firstpage
323
Lastpage
332
Abstract
We study the problem of multiple description (MD) coding of stationary Gaussian sources with memory. First, we compute an approximate rate distortion region for these sources, which we prove to be asymptotically tight at high rates: this region generalizes the standard MD rate distortion region for memoryless sources. Then we develop an algorithm for the design of optimal biorthogonal filter banks for MD coding. Finally. We present some experimental results, where we measure the deviation from optimality of our proposed system. For almost uncorrelated sources the gap between the performance of our proposed system and the ideal bounds is quite high, on the other hand for highly correlated sources this gap is reduced, due to the ability of our system to take advantage of the memory in the source. In this case, in realistic scenarios where finite complexity/delay is an issue, the subband coding approach is competitive with other approaches such as the decorrelating transform followed by MD scalar quantizers
Keywords
Gaussian channels; channel bank filters; channel coding; filtering theory; optimisation; rate distortion theory; source coding; MD coding; approximate rate distortion region; finite complexity; finite delay; memory; multiple description coding; optimal biorthogonal filter banks; performance; stationary Gaussian sources; subband coding; Algorithm design and analysis; Approximation algorithms; Decoding; Decorrelation; Degradation; Distortion measurement; Filter bank; Gaussian processes; Rate-distortion; Uniform resource locators;
fLanguage
English
Publisher
ieee
Conference_Titel
Data Compression Conference, 2000. Proceedings. DCC 2000
Conference_Location
Snowbird, UT
ISSN
1068-0314
Print_ISBN
0-7695-0592-9
Type
conf
DOI
10.1109/DCC.2000.838172
Filename
838172
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