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Optimizing Throughput in a MIMO System With a Self-Sustained Relay and Non-Uniform Power Splitting

机译:具有自持中继和非均匀功率分配的MIMO系统中的吞吐量优化

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We present a novel approach to maximize the transmission rate in a MIMO relay system, where all nodes are equipped with multiple antennas and the relay is self-sustained by harvesting energy using a non-uniform power splitting method. By deriving a closed-form solution for the optimal power splitting ratios for harvesting at the relay and the optimal power allocation for precoding at both source and relay, we are able to design an efficient primal-dual algorithm to jointly optimize for these variables, instead of solving for them sequentially as traditionally done. We demonstrate the algorithm efficiency at reducing the run-time by several orders of magnitude compared to standard solvers and existing sequential algorithms, making our algorithm highly amenable to massive MIMO settings. Numerical results further reveal the significant rate gain of non-uniform power splitting over traditional uniform splitting.
机译:我们提出了一种新颖的方法来最大化MIMO中继系统中的传输速率,在该系统中,所有节点都配备有多个天线,并且该中继通过使用非均匀功率分配方法收集能量而得以自我维持。通过推导用于继电器采集的最佳功率分配比和用于信号源和继电器的预编码的最佳功率分配的闭式解,我们能够设计一种有效的原始对偶算法来联合优化这些变量,按照传统方式依次解决问题。与标准求解器和现有的顺序算法相比,我们证明了将运行时间减少几个数量级的算法效率,从而使我们的算法非常适合大规模MIMO设置。数值结果进一步表明,与传统的均匀分裂相比,非均匀功率分裂具有明显的速率增益。

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