毫米波能量收集网络的能量覆盖

T. Khan, A. Alkhateeb, R. Heath
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引用次数: 15

摘要

毫米波(mmWave)蜂窝网络中的无线能量收集很有吸引力,这要归功于这些系统的大型天线阵列和预期的密集部署。然而,在毫米波频率上的信号传播显示出特殊的传播特性,例如对建筑物阻塞的极端敏感性。这项工作分析了毫米波蜂窝网络供电的接收器的能量收集性能。利用随机几何工具,导出了解析表达式,以蜂窝网络密度、天线几何参数和信道参数来表征典型接收器的能量覆盖概率。结果表明,在许多操作场景下,通常存在一个使全网能量覆盖概率最大化的最佳发射天线波束宽度。仿真结果进一步表明,与低频解决方案相比,毫米波能量收集可以提供实质性的性能提升。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy Coverage in Millimeter Wave Energy Harvesting Networks
Wireless energy harvesting in millimeter wave (mmWave) cellular networks is attractive, thanks to the large antenna arrays and the anticipated dense deployment of these systems. The signal propagation at mmWave frequencies, however, shows peculiar propagation characteristics such as extreme sensitivity to building blockages. This work analyzes the energy harvesting performance at receivers powered by a mmWave cellular network. Leveraging tools from stochastic geometry, analytical expressions are derived to characterize the energy coverage probability at a typical receiver in terms of the cellular network density, the antenna geometry parameters, and the channel parameters. Results show that there typically exists an optimum transmit antenna beamwidth that maximizes the network-wide energy coverage probability for many operating scenarios. Simulation results further suggest that mmWave energy harvesting could provide a substantial performance boost compared to lower frequency solutions.
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