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Jointly Optimal Channel Pairing and Power Allocation for Multichannel Multihop Relaying

机译:多通道多跳中继的联合最优通道配对和功率分配

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摘要

We study the problem of channel pairing and power allocation in a multichannel multihop relay network to enhance the end-to-end data rate. Both amplify-and-forward (AF) and decode-and-forward (DF) relaying strategies are considered. Given fixed power allocation to the channels, we show that channel pairing over multiple hops can be decomposed into independent pairing problems at each relay, and a sorted-SNR channel pairing strategy is sum-rate optimal, where each relay pairs its incoming and outgoing channels by their SNR order. For the joint optimization of channel pairing and power allocation under both total and individual power constraints, we show that the problem can be decoupled into two subproblems solved separately. This separation principle is established by observing the equivalence between sorting SNRs and sorting channel gains in the jointly optimal solution. It significantly reduces the computational complexity in finding the jointly optimal solution. It follows that the channel pairing problem in joint optimization can be again decomposed into independent pairing problems at each relay based on sorted channel gains. The solution for optimizing power allocation for DF relaying is also provided, as well as an asymptotically optimal solution for AF relaying. Numerical results are provided to demonstrate substantial performance gain of the jointly optimal solution over some suboptimal alternatives. It is also observed that more gain is obtained from optimal channel pairing than optimal power allocation through judiciously exploiting the variation among multiple channels. Impact of the variation of channel gain, the number of channels, and the number of hops on the performance gain is also studied through numerical examples.
机译:我们研究了多通道多跳中继网络中的通道配对和功率分配问题,以提高端到端数据速率。同时考虑了放大转发(AF)和解码转发(DF)中继策略。给定固定的信道功率分配,我们表明,可以将每个中继上的多跳信道配对分解为独立的配对问题,并且有一个SNR配对的信道配对策略是总和最优的,其中每个中继将其传入和传出信道配对按其SNR顺序。对于总功率和单个功率约束下的信道配对和功率分配的联合优化,我们表明该问题可以解耦为分别解决的两个子问题。通过观察联合优化解决方案中的SNR排序与信道增益排序之间的等效关系来建立这种分离原理。它大大降低了寻找联合最优解的计算复杂度。因此,基于排序的信道增益,联合优化中的信道配对问题可以再次分解为每个中继的独立配对问题。还提供了优化DF中继功率分配的解决方案,以及AF中继的渐近最优解决方案。提供了数值结果,以证明联合最优解在某些次优替代方案上的实质性能提升。还可以观察到,通过明智地利用多个通道之间的变化,从最佳通道配对获得的增益要大于最佳功率分配。还通过数值示例研究了通道增益,通道数量和跳数变化对性能增益的影响。

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