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Joint design of vector quantizers and RCPC channel codes for Rayleigh fading channels

机译:瑞利衰落信道的矢量量化器和RCPC信道代码的联合设计

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摘要

We study the performance of joint source and channel codes designed to minimize end-to-end distortion over a Rayleigh fading channel. We consider two joint code designs. The first joint code uses a sequential design: a standard vector quantizer (VQ) source code is designed for a perfect channel (noiseless and distortionless) and then an RCPC channel code is optimized relative to the VQ and the channel statistics. The second design jointly optimizes a channel optimized VQ (COVQ) and an RCPC channel code through an iterative design process. We consider both hard-decision and soft-decision decoding for the channel codes. In both designs the bit allocation between the source and channel codes is optimized. At this optimal bit allocation, the performance of the iterative joint design and the simpler sequential design are nearly the same over the range of SNR values that we considered. Both code designs outperform standard COVQ and by up to 6 dB, and this performance improvement is most pronounced at low SNRs.
机译:我们研究了联合源代码和信道代码的性能,这些代码旨在最小化瑞利衰落信道上的端到端失真。我们考虑两种联合代码设计。第一个联合代码采用顺序设计:针对完美的信道(无噪声和无失真)设计标准矢量量化器(VQ)源代码,然后相对于VQ和信道统计信息优化RCPC信道代码。第二种设计通过迭代设计过程共同优化了通道优化的VQ(COVQ)和RCPC通道代码。我们考虑对信道码进行硬判决和软判决解码。在这两种设计中,源代码和通道代码之间的位分配都得到了优化。在这种最佳位分配下,在我们考虑的SNR值范围内,迭代联合设计和更简单的顺序设计的性能几乎相同。两种代码设计均优于标准COVQ并高达6 dB,并且这种性能改进在低SNR时最为明显。

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