Resource Allocation Policies for Hybrid Power-Grid and Harvested Energy Communication Systems

Iman Valiulahi, C. Masouros, Abdelhamid Salem
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Abstract

This work studies resource allocation policies for a multi-antenna access point that is powered by a combination of harvested energy and the power grid, communicating with multiple single-antenna users. We propose a non-convex problem to directly solve the throughput maximization problem. Though the problem is challenging to solve, we first propose an iterative algorithm based on the first-order Taylor expansion and block coordinate descent for the scenario that full channel state information (CSI) and energy arrival information (EAI) are assumed to be known. Then, inspired by this scenario, we study a case in which statistical CSI and EAI are only required. Simulation results demonstrate that the energy-performance trade-off as well as the performance of the statistical case is comparable to the full CSI and EAI scenario, which supports the practical aspect of the proposed policies.
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混合电网与能量采集通信系统的资源分配策略
这项工作研究了多天线接入点的资源分配策略,该接入点由收集的能量和电网的组合供电,与多个单天线用户通信。我们提出了一个非凸问题来直接解决吞吐量最大化问题。尽管该问题具有挑战性,但我们首先提出了一种基于一阶泰勒展开和块坐标下降的迭代算法,该算法假设全通道状态信息(CSI)和能量到达信息(EAI)已知。然后,受此场景的启发,我们研究了一个仅需要统计CSI和EAI的案例。仿真结果表明,能源性能权衡以及统计案例的性能与完整的CSI和EAI场景相当,这支持了所建议政策的实际方面。
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