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UAV-assisted Data Collection in Wireless Powered Sensor Networks over Multiple Fading Channels

机译:无线传感器网络中多个衰落信道上的无人机辅助数据收集

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Radio frequency energy harvesting (RF-EH) offers an unorthodox solution to the painstaking energy constraint drawback in wireless sensor networks (WSNs). In this paper, a data-gathering scenario from a UAV assisted WSN that consists of multiple sensor nodes (SNs) and power beacons (PBs) is considered. All the SNs are remotely powered by the PBs via wireless power transfer (WPT). In the first phase, a cluster-head (CH) is selected from the powered-up SNs and each SN periodically sends its observations to the CH. In the second phase, UAV powers the CH and collects the aggregated sensor observations from the CH. Under the assumption of Rayleigh and Rician fading channels, the outage probability at the UAV is derived and identified the time ratio of the proposed time-block structure that minimizes the outage probability. Furthermore, an effective algorithm is proposed to generate a solution for the process of CH selection. Finally, the achievable outage probability, throughput and the service range of the UAV are demonstrated for a given random setup of WSN through the theoretical and simulation results obtained.
机译:射频能量收集(RF-EH)为无线传感器网络(WSN)中艰苦的能量约束缺陷提供了一种非常规的解决方案。在本文中,考虑了无人机辅助WSN的数据收集方案,该方案由多个传感器节点(SN)和电源信标(PB)组成。 PB通过无线电力传输(WPT)对所有SN进行远程供电。在第一阶段,从加电的SN中选择簇头(CH),每个SN定期将其观察结果发送给CH。在第二阶段,无人机为CH供电,并从CH收集汇总的传感器观测值。在Rayleigh和Rician衰落信道的假设下,得出了UAV的中断概率,并确定了所建议的时间块结构的时间比率,该时延结构使中断概率最小。此外,提出了一种有效的算法来生成CH选择过程的解决方案。最后,通过获得的理论和仿真结果,证明了给定的WSN随机设置下,UAV可以实现的中断概率,吞吐量和服务范围。

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