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Wyner-Ziv Coding Based on Multidimensional Nested Lattices (1111.1347v1)

Published 5 Nov 2011 in cs.IT and math.IT

Abstract: Distributed source coding (DSC) addresses the compression of correlated sources without communication links among them. This paper is concerned with the Wyner-Ziv problem: coding of an information source with side information available only at the decoder in the form of a noisy version of the source. Both the theoretical analysis and code design are addressed in the framework of multi-dimensional nested lattice coding (NLC). For theoretical analysis, accurate computation of the rate-distortion function is given under the high-resolution assumption, and a new upper bound using the derivative of the theta series is derived. For practical code design, several techniques with low complexity are proposed. Compared to the existing Slepian-Wolf coded nested quantization (SWC-NQ) for Wyner-Ziv coding based on one or two-dimensional lattices, our proposed multi-dimensional NLC can offer better performance at arguably lower complexity, since it does not require the second stage of Slepian-Wolf coding.

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Authors (3)
  1. Cong Ling (91 papers)
  2. Su Gao (30 papers)
  3. Jean-Claude Belfiore (40 papers)
Citations (17)

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