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Binary lattice vector quantization with linear block codes and affine index assignments

机译:具有线性分组码和仿射索引分配的二进制晶格矢量量化

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We determine analytic expressions for the performance of some low-complexity combined source-channel coding systems. The main tool used is the Hadamard transform. In particular, we obtain formulas for the average distortion of binary lattice vector quantization with affine index assignments, linear block channel coding, and a binary-symmetric channel. The distortion formulas are specialized to nonredundant channel codes for a binary-symmetric channel, and then extended to affine index assignments on a binary-asymmetric channel. Various structured index assignments are compared. Our analytic formulas provide a computationally efficient method for determining the performance of various coding schemes. One interesting result shown is that for a uniform source and uniform quantizer, the natural binary code is never optimal for a nonsymmetric channel, even though it is known to be optimal for a symmetric channel.
机译:我们确定一些低复杂度的组合源通道编码系统的性能的解析表达式。使用的主要工具是Hadamard变换。特别是,我们获得了具有仿射索引分配,线性块通道编码和二进制对称通道的二进制点阵矢量量化平均失真的公式。失真公式专门用于二进制对称信道的非冗余信道代码,然后扩展到二进制非对称信道上的仿射索引分配。比较各种结构化索引分配。我们的解析公式为确定各种编码方案的性能提供了一种计算有效的方法。示出的一个有趣的结果是,对于统一的源和统一的量化器,自然二进制代码对于非对称信道永远不会是最优的,即使已知它对于对称信道也是最优的。

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