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Throughput Maximization in Multicarrier Wireless Powered Relaying Networks

机译:多载波无线中继网络中的吞吐量最大化

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Dynamic power allocation and power splitting, in a multicarrier two-hop link with a wireless powered relay, is investigated. We first formulate the corresponding optimization problem, which consists of the joint optimization -in terms of achievable rate- of, 1) the dynamic power allocation among multiple channels and, 2) the selection of the power splitting ratio between information processing and energy harvesting at the relay, when amplify-and-forward is applied. This is a non-convex optimization problem, which is mapped to a convex one and optimally solved using one-dimensional search and dual decomposition, while a suboptimal efficient iterative method is also proposed. Simulations reveal a significant increase in the throughput, when comparing the proposed approach with two alternative power allocation schemes, while they verify the effectiveness of the fast-converging iterative solution.
机译:研究了在带有无线中继的多载波两跳链路中的动态功率分配和功率分配。我们首先提出相应的优化问题,该问题包括联合优化(从可实现的速率方面而言):1)多通道之间的动态功率分配; 2)选择信息处理和能量收集之间的功率分配比应用放大转发时的继电器。这是一个非凸优化问题,被映射到一个凸优化问题,并使用一维搜索和对偶分解进行优化求解,同时还提出了次优有效的迭代方法。当将拟议的方法与两种替代的功率分配方案进行比较时,仿真结果表明吞吐量显着提高,同时它们验证了快速收敛的迭代解决方案的有效性。

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