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On the Operational Rate-Distortion Performance of Uniform Scalar Quantization-Based Wyner–Ziv Coding of Laplace–Markov Sources

机译:基于均匀标量量化的Laplace-Markov源Wyner-Ziv编码的运算率失真性能

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摘要

Wyner–Ziv (WZ) coding has recently been proposed as a low encoding complexity alternative to traditional DPCM coding for compression of sources with memory, in particular, in applications like multimedia compression. The viability of this alternative approach clearly depends on the compression performance of WZ coding compared to that of DPCM coding. In an attempt to understand the performance gap between WZ coding and DPCM coding, this paper studies the operational rate-distortion performance of WZ coding, using uniform scalar quantization followed by perfect Slepian–Wolf coding, for compression of a Laplace–Markov (LM) source. It is shown that at low rates or for weakly correlated LM sources, WZ coding is indeed a competitive alternative to DPCM coding. However, at high rates the performance gap becomes non-negligible for strongly correlated LM sources. In order to reduce the gap at high rates, a hybrid approach that combines DPCM coding and WZ coding is further investigated. It is shown that the hybrid approach is indeed competitive to DPCM coding at all rates even for strongly correlated LM sources.
机译:Wyner-Ziv(WZ)编码最近被提议作为一种低编码复杂度的替代传统DPCM编码的方法,尤其是在诸如多媒体压缩之类的应用中,这种传统DPCM编码可利用内存进行压缩。与DPCM编码相比,这种替代方法的可行性显然取决于WZ编码的压缩性能。为了理解WZ编码和DPCM编码之间的性能差距,本文研究了WZ编码的运算率失真性能,使用均匀标量量化后再加上完善的Slepian-Wolf编码来压缩Laplace-Markov(LM)资源。结果表明,在低速率或弱相关的LM源中,WZ编码确实是DPCM编码的竞争选择。但是,在高速率下,对于高度相关的LM源,性能差距变得不可忽略。为了减少高速率的差距,进一步研究了结合DPCM编码和WZ编码的混合方法。结果表明,即使对于高度相关的LM信号源,混合方法确实在所有速率下都比DPCM编码更具竞​​争力。

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