Reduced-state decoding in two-way relay networks with physical-layer network coding

D. To, Jinho Choi
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引用次数: 8

Abstract

We consider the information exchange between two source nodes with the help of a relay node in a two-way relay network (TWRN). Based on physical-layer network coding (PNC), at the relay node, Viterbi or BCJR algorithms based on a full-state trellis can be used for decoding. Since the relay node only needs to decode XORed message rather than two individual messages in PNC, we show that the decoding can be performed using a reduced-state trellis which results in a lower complexity. It is proved that if the source nodes use identical encoders, based on the reduced-state trellis, the diversity order is kept unchanged, which is then confirmed by simulation results.
具有物理层网络编码的双向中继网络中的减少状态解码
在双向中继网络(TWRN)中,我们考虑在中继节点的帮助下两个源节点之间的信息交换。基于物理层网络编码(PNC),在中继节点上,可以采用基于全状态网格的Viterbi或BCJR算法进行解码。由于中继节点只需要解码xor消息而不是PNC中的两个单独的消息,因此我们表明可以使用减少状态网格执行解码,从而降低复杂性。证明了如果源节点使用相同的编码器,基于状态约简网格的分集顺序保持不变,仿真结果也证实了这一点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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