带网络编码的双向中继的资源分配

S. Huang, R. Cheng
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引用次数: 0

摘要

考虑双向中继(TWR)通道,其中两个用户在单个中继的帮助下交换消息。在中继功率预算和用户功率预算分离的假设下,采用具有柔性时间分数的物理层网络编码(PNC)实现TWR信道的和速率最大化。我们提出了一种最优的用户间功率分配方案,并发现在高信噪比(SNR)条件下,用户功率分配应与信道增益成反比。此外,PNC-TWR的双向流具有充分的分集增益。等时间分数情况的分析和柔性时间分数情况的数值结果都表明,当信道增益相似时,PNC继电比基于译码转发的TWR (DF-TWR)继电性能更好,而当信道增益相差较大时,DF继电性能更好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Resource allocation for two-way relaying with network coding
A two-way relay (TWR) channel is considered where two users exchange their messages with the help of a single relay. With the assumption of separate relay power budget and user power budget, we maximize the sum-rate of the TWR channel using physical-layer network coding (PNC) with flexible time fraction. We propose an optimal power allocation scheme between users and find that in high signal-to-noise ratio (SNR) regime, the user power should be allocated inversely proportional to the channel gains. Moreover, the bidirectional streams of the PNC-TWR enjoy full diversity gain. The analysis of the equal time fraction case and the numerical results of the flexible time fraction case both imply that the PNC relaying performs better than the decode-and-forward based TWR (DF-TWR) if the channel gains are similar, while the DF relaying performs better if the channel gains are quite different.
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