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Joint optimal power allocation and relay location for decode-and-forward multi-hop relaying over log-normal channel

机译:联合最优功率分配和中继位置,用于对数正态信道上的解码和转发多跳中继

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摘要

A joint optimisation of power allocation (PA) and relay location is proposed for decode-and-forward relaying over multi-hop, independent, log-normal fading channels. Optimisation is carried out at high signal-to-noise ratio (SNR) and low SNR scenarios to minimise the outage probability with a constraint on total transmit power and end-to-end relaying distance. End-to-end average bit error rate is also minimised assuming the same constraints. Optimisation is carried out to find optimal PA (OPA) for a given relay location, optimal relay location (ORL) for a given PA and joint OPA and relay location. All the optimisation problems reformulated from the original problems are shown to be convex except relay location optimisation minimising outage probability at low SNR scenario. It is then solved using properties of concave minimisation. Optimal allocation factors do not depend on the instantaneous channel state information. It also does not depend on total available power in the system except allocation factors evaluated by optimising outage at high SNR. It is observed that OPA allocates more power to weaker links and ORL allocates less distance to weaker links. It is also observed that performance improvement increases with increase in link unbalance and distance-based allocation is most effective.
机译:针对多跳,独立,对数正态衰落信道上的解码和转发中继,提出了功率分配(PA)和中继位置的联合优化。在高信噪比(SNR)和低SNR场景下进行优化,以在总发射功率和端到端中继距离受到限制的情况下最大程度地降低中断概率。假设相同的约束条件,端到端的平均误码率也被最小化。进行优化以找到给定中继位置的最佳PA(OPA),给定PA以及联合OPA和中继位置的最佳中继位置(ORL)。从原始问题重新构成的所有优化问题都显示为凸形,除了中继位置优化可将低SNR情况下的中断概率降至最低。然后使用凹面最小化的特性对其进行求解。最佳分配因子不取决于瞬时信道状态信息。除了通过优化高SNR中断而评估的分配因子外,它还不取决于系统中的总可用功率。可以看出,OPA为较弱的链路分配了更多的功率,而ORL为较弱的链路分配了较小的距离。还可以观察到,性能提高随着链路不平衡的增加而增加,并且基于距离的分配最为有效。

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