基于外部信息传输图的并行串联turbo码编码协同通信优化

Vasani Ekta, Manisha A. Upadhyay, D. Kothari
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摘要

本文研究了基于半双工约束的3节点中继信道的协同通信编码方案设计。在分析组件码的外在信息传递特性(EXIT)图的基础上,探讨了源节点采用Turbo码以提高系统可靠性的潜力。在第一传输周期内,源节点向中继和目的节点同时发送编码符号。继电器执行并行连接码解码。然后在第二次传输期间使用递归系统卷积(RSC)代码对信息位重新编码。从源节点和中继节点传输的合成符号可以看作是三分量并行连接编码器的编码符号。因此,利用EXIT图进行迭代解码,有助于找到最佳的组成编码方案,创建并行级联码,实现协同通信。因此,在考虑交织器大小、码率和码多项式的基础上,设计了一种基于Turbo码的协同通信系统。
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Optimization of parallel concatenated turbo code for coded cooperative communication using extrinsic information transfer chart
In this paper, we address the design of Cooperative communication with coding schemes for the 3-node relay channel with half-duplex constraint. Based on an analysis of the extrinsic information transfer characteristics (EXIT) chart of the component codes we investigate the potential of Turbo codes which are employed by the source node in order to increase the reliability of the system. The source node transmits coded symbols to both the relay and the destination nodes during the first transmission period. The relay performs parallel concatenated codes decoding. It then re-encodes the information bits using a Recursive Systematic Convolutional (RSC) code during the second transmission period. The resultant symbols transmitted from the source and relay nodes can be viewed as the coded symbols of a three-component parallel-concatenated encoder. Thus the EXIT chart is used for iterative decoding and it is helpful to find the best constituent coding schemes for creating parallel concatenated codes for cooperative communication. Thus by considering the interleaver size, code rate and code polynomial we can design a system for cooperative communication using Turbo codes.
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