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Iterative Symbol Decoding of Distributed Channel Encoded Fixed-Length Codes for Cooperative Communications

机译:协作通信的分布式信道编码固定长度码的迭代符号解码

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In this paper, we study the iterative decoding of distributed channel encoded fixed-length codes for power-efficient cooperative transmissions. By exploiting the technique of iterative source channel decoding (ISCD), the iterative decoding for cooperative transmissions exploits two types of the redundant information: the residual redundancy inherently remaining in the source codes, and the artificial redundant information provided by the distributed channel coder. To avoid the information loss on the bit-to-symbol conversion, we adopt symbol-level ISCD scheme consisting of the symbol-level channel decoder and the symbol-level source decoder. Our proposed iterative decoding can improve parameter signal-to-noise ratio (PSNR) performances by iteratively refining the extrinsic information for the source and the distributed channel decoders. Furthermore, the proposed source decoding algorithm based on the symbol-level BCJR algorithm enables the iterative decoding to efficiently exploit the extrinsic information conveyed by relay and source nodes. Simulation results show that the proposed iterative decoding scheme with the proposed source decoder and the symbol-level BCJR channel decoder delivers the robust power-efficient performance, and outperforms conventional decoding schemes.
机译:在本文中,我们研究了用于高效节能协作传输的分布式信道编码定长码的迭代解码。通过利用迭代源信道解码(ISCD)技术,用于协作传输的迭代解码利用了两种类型的冗余信息:源代码中固有的剩余冗余以及分布式信道编码器提供的人工冗余信息。为了避免比特到符号转换时的信息丢失,我们采用由符号级通道解码器和符号级源解码器组成的符号级ISCD方案。我们提出的迭代解码可以通过迭代优化源和分布式通道解码器的外部信息来提高参数信噪比(PSNR)性能。此外,所提出的基于符号级BCJR算法的源解码算法使得迭代解码能够有效地利用中继节点和源节点传达的外部信息。仿真结果表明,采用源解码器和符号级BCJR信道解码器的迭代解码方案具有鲁棒的省电性能,并且优于传统的解码方案。

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