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Dual-hop full duplex relay networks over composite fading channels: Power and location optimization

机译:复合衰落信道上的双跳全双工中继网络:功率和位置优化

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This paper investigates schemes for improving the outage performance of dual-hop full duplex (FD) and half duplex (HD) decode and forward (DF) based relay networks over composite Nakagami-m/log-normal fading channels. First of all, we derive new analytical expression for the outage probability of dual-hop FDR network considering the effects of interference caused by direct link from source-to-destination and the residual self-interference (RSI) at the full duplex relay (FDR). We also provide the asymptotic outage probability expression. We then investigate optimal power allocation (OPA); optimal relay location (ORL) and joint optimization of transmit power and relay location that minimizes the outage probability. We show that the first two problems are convex and devise modified Polak–Ribiere Conjugate Gradient Method to determine the OPA and ORL. Since the joint optimization problem is non convex, we devise an efficient, low complex and fast converging iterative algorithm based on alternating optimization technique. We repeat the investigations for dual-hop HDR networks as well assuming composite fading model. The results demonstrate that both OPA and ORL can improve the outage probability; however joint optimization leads to superior performance as compared to OPA, ORL and un-optimized cases.
机译:本文研究了在复合Nakagami-m / log-normal衰落信道上改善基于双跳全双工(FD)和半双工(HD)解码和前向(DF)的中继网络的中断性能的方案。首先,我们考虑到源到目的地的直接链接所造成的干扰以及全双工中继器(FDR)上的残留自干扰(RSI),得出了双跳FDR网络中断概率的新解析表达式。 )。我们还提供了渐近中断概率表达式。然后,我们研究最佳功率分配(OPA);最佳中继位置(ORL)以及发射功率和中继位置的联合优化,从而最大程度地降低了中断概率。我们证明前两个问题是凸的,并设计了改进的Polak-Ribiere共轭梯度法来确定OPA和ORL。由于联合优化问题是非凸的,因此我们设计了一种基于交替优化技术的高效,低复杂度和快速收敛的迭代算法。我们重复双跳HDR网络的研究,并假设复合衰落模型。结果表明,OPA和ORL都可以提高中断的可能性;但是,与OPA,ORL和未优化的案例相比,联合优化可带来卓越的性能。

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