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Rate-adaptive BCH codes for distributed source coding

机译:适用于分布式源编码的速率自适应BCH码

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摘要

This paper considers Bose-Chaudhuri-Hocquenghem (BCH) codes for distributed source coding. A feedback channel is employed to adapt the rate of the code during the decoding process. The focus is on codes with short block lengths for independently coding a binary source X and decoding it given its correlated side information Y. The proposed codes have been analyzed in a high-correlation scenario, where the marginal probability of each symbol, X i in X, given Y is highly skewed (unbalanced). Rate-adaptive BCH codes are presented and applied to distributed source coding. Adaptive and fixed checking strategies for improving the reliability of the decoded result are analyzed, and methods for estimating the performance are proposed. In the analysis, noiseless feedback and noiseless communication are assumed. Simulation results show that rate-adaptive BCH codes achieve better performance than low-density parity-check accumulate (LDPCA) codes in the cases studied.
机译:本文考虑将Bose-Chaudhuri-Hocquenghem(BCH)码用于分布式源编码。在解码过程中,采用反馈信道来适应代码的速率。重点在于具有短块长度的代码,用于独立地编码二进制源X并在给定其相关辅助信息Y的情况下对其进行解码。在高相关方案中分析了所建议的代码,其中每个符号X i的边际概率如果Y高度偏斜(不平衡),则X。提出了速率自适应BCH码,并将其应用于分布式源编码。分析了用于提高解码结果可靠性的自适应和固定检查策略,并提出了估计性能的方法。在分析中,假定无噪声反馈和无噪声通信。仿真结果表明,在所研究的情况下,速率自适应的BCH码比低密度奇偶校验累加(LDPCA)码具有更好的性能。

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