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Distributed joint source-channel coding for relay systems exploiting spatial and temporal correlations

机译:利用空间和时间相关性的中继系统分布式联合源信道编码

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In this paper, we propose a distributed joint source-channel coding (DJSCC) strategy to exploit spatial and temporal correlations simultaneously for transmitting binary Markov sources in a one-way relay system. The relay only extract and forward the source message to the destination, which implies imperfect decoding at the relay. The probability of errors occurring in the source-relay link can be regarded as spatial correlation between source and relay nodes. This spatial correlation can be estimated at the destination node and utilized in the iterative processing. In addition, the knowledge about the temporal correlation of the Markov source is also utilized at the destination. A modified version of the BCJR algorithm is derived to exploit the temporal correlation. Furthermore, extrinsic information transfer (EXIT) chart analysis is performed to investigate convergence property of the proposed technique with the aim of the suitable code design. Simulation results for bit error rate (BER) performance and EXIT chart analysis show that, by exploiting the spatial and temporal correlations simultaneously, our proposed technique achieves significant performance gain, compared with the case where the correlation knowledge is not fully used.
机译:在本文中,我们提出了一种分布式联合源信道编码(DJSCC)策略,以同时利用空间和时间相关性在单向中继系统中传输二进制Markov源。中继仅提取源消息并将其转发到目的地,这意味着中继上的解码不完善。在源-中继链路中发生错误的概率可以视为源与中继节点之间的空间相关性。可以在目的地节点处估计该空间相关性,并将其用于迭代处理中。另外,在目的地还利用了有关马尔可夫源的时间相关性的知识。导出了BCJR算法的修改版本以利用时间相关性。此外,以适当的代码设计为目标,进行了外部信息传递(EXIT)图表分析,以研究所提出技术的收敛性。误码率(BER)性能和EXIT图表分析的仿真结果表明,与未充分利用相关知识的情况相比,通过同时利用空间和时间相关性,我们提出的技术可显着提高性能。

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