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Performance Analysis of Adaptive Physical Layer Network Coding for Wireless Two-Way Relaying

机译:无线双向中继的自适应物理层网络编码性能分析

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摘要

The performance analysis of adaptive physical layer network-coded two-way relaying scenario is presented which employs two phases: Multiple access (MA) phase and Broadcast (BC) phase. The deep channel fade conditions which occur at the relay referred as the singular fade states fall in the following two classes: (i) removable and (ii) non-removable singular fade states. With every singular fade state, we associate an error probability that the relay transmits a wrong network-coded symbol during the BC phase. It is shown that adaptive network coding provides a coding gain over fixed network coding, by making the error probabilities associated with the removable singular fade states contributing to the average Symbol Error Rate (SER) fall as SNR^{-2} instead of SNR^{-1}. A high SNR upper-bound on the average end-to-end SER for the adaptive network coding scheme is derived, for a Rician fading scenario, which is found to be tight through simulations. Specifically, it is shown that for the adaptive network coding scheme, the probability that the relay node transmits a wrong network-coded symbol is upper-bounded by twice the average SER of a point-to-point fading channel, at high SNR. Also, it is shown that in a Rician fading scenario, it suffices to remove the effect of only those singular fade states which contribute dominantly to the average SER.
机译:提出了自适应物理层网络编码双向中继方案的性能分析,该方案采用两个阶段:多路访问(MA)阶段和广播(BC)阶段。在中继器处发生的深通道衰落条件称为奇异衰落状态,分为以下两类:(i)可移动和(ii)不可移动奇异衰落状态。对于每个奇异的衰落状态,我们将错误概率与中继在BC阶段传输错误的网络编码符号的概率相关联。通过使与有助于平均符号错误率(SER)的可移动奇异衰落状态相关的错误概率下降为SNR ^ {-2}而不是SNR ^,表明自适应网络编码比固定网络编码提供了编码增益。 {-1}。对于Rician衰落场景,得出了自适应网络编码方案的平均端到端SER的高SNR上限,通过仿真发现它很紧。具体地,示出了对于自适应网络编码方案,在高SNR下,中继节点发送错误的网络编码符号的概率被上限为点对点衰落信道的平均SER的两倍。而且,表明在Rician衰落情况下,仅除去那些主要影响平均SER的奇异衰落状态的影响就足够了。

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