DocumentCode
1369949
Title
Multiple-Description Coding by Dithered Delta–Sigma Quantization
Author
Østergaard, Jan ; Zamir, Ram
Author_Institution
Dept. of Electron. Syst., Aalborg Univ., Aalborg, Denmark
Volume
55
Issue
10
fYear
2009
Firstpage
4661
Lastpage
4675
Abstract
We address the connection between the multiple-description (MD) problem and delta-sigma quantization. The inherent redundancy due to oversampling in delta-sigma quantization, and the simple linear-additive noise model resulting from dithered lattice quantization, allow us to construct a symmetric and time-invariant MD coding scheme. We show that the use of a noise-shaping filter makes it possible to trade off central distortion for side distortion. Asymptotically, as the dimension of the lattice vector quantizer and order of the noise-shaping filter approach infinity, the entropy rate of the dithered delta-sigma quantization scheme approaches the symmetric two-channel MD rate-distortion function for a memoryless Gaussian source and mean square error (MSE) fidelity criterion, at any side-to-central distortion ratio and any resolution. In the optimal scheme, the infinite-order noise-shaping filter must be minimum phase and have a piecewise flat power spectrum with a single jump discontinuity. An important advantage of the proposed design is that it is symmetric in rate and distortion by construction, so the coding rates of the descriptions are identical and there is therefore no need for source splitting.
Keywords
combined source-channel coding; delta-sigma modulation; least mean squares methods; dithered delta-sigma quantization; entropy rate; lattice vector quantizer; linear-additive noise model; mean square error fidelity criterion; memoryless Gaussian source; multiple-description coding; noise-shaping filter; side-to-central distortion ratio; source splitting; symmetric coding scheme; time-invariant coding scheme; Entropy; Filters; H infinity control; Lattices; Mean square error methods; Noise shaping; Quantization; Rate distortion theory; Rate-distortion; Redundancy; Delta–Sigma modulation; dithered lattice quantization; entropy coding; joint source–channel coding; multiple-description (MD) coding; vector quantization;
fLanguage
English
Journal_Title
Information Theory, IEEE Transactions on
Publisher
ieee
ISSN
0018-9448
Type
jour
DOI
10.1109/TIT.2009.2027528
Filename
5238754
Link To Document