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Optimal Power Allocation for Energy Harvesting and Power Grid Coexisting Wireless Communication Systems

机译:能量收集和电网共存的无线通信系统的最佳功率分配

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This paper considers the power allocation of a single-link wireless communication with joint energy harvesting and grid power supply. We formulate the problem as minimizing the grid power consumption with random energy and data arrival in fading channel, and analyze the structure of the optimal power allocation policy in some special cases. For the case that all the packets are arrived before transmission, it is a dual problem of throughput maximization, and the optimal solution is found by the two-stage water filling (WF) policy, which allocates the harvested energy in the first stage, and then allocates the power grid energy in the second stage. For the random data arrival case, we first assume grid energy or harvested energy supply only, and then combine the results to obtain the optimal structure of the coexisting system. Specifically, the reverse multi-stage WF policy is proposed to achieve the optimal power allocation when the battery capacity is infinite. Finally, some heuristic online schemes are proposed, of which the performance is evaluated by numerical simulations.
机译:本文考虑了具有联合能量收集和电网电源的单链路无线通信的功率分配。我们将问题归结为以随机能量和衰落信道中的数据到达来最小化电网功耗,并在某些特殊情况下分析最优功率分配策略的结构。对于所有数据包都在传输之前到达的情况,这是吞吐量最大化的双重问题,并且通过两阶段注水(WF)策略找到最佳解决方案,该策略在第一阶段分配收获的能量,并且然后在第二阶段分配电网能量。对于随机数据到达的情况,我们首先假定仅使用电网能量或收集的能量,然后将结果合并以获得共存系统的最佳结构。具体而言,提出了反向多阶段WF策略,以在电池容量无限时实现最佳功率分配。最后,提出了一些启发式的在线方案,其性能通过数值模拟来评估。

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