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Performance Analysis of Ambient RF Energy Harvesting with Repulsive Point Process Modeling

机译:排斥点过程建模的环境射频能量收集性能分析

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摘要

Ambient radio frequency (RF) energy harvesting technique has recently been proposed as a potential solution for providing proactive energy replenishment for wireless devices. This paper aims to analyze the performance of a battery-free wireless sensor powered by ambient RF energy harvesting using a stochastic geometry approach. Specifically, we consider the point-to-point uplink transmission of a wireless sensor in a stochastic geometry network, where ambient RF sources, such as mobile transmit devices, access points and base stations, are distributed as a Ginibre -determinantal point process (DPP). The DPP is able to capture repulsion among points, and hence, it is more general than the Poisson point process (PPP). We analyze two common receiver architectures: separated receiver and time-switching architectures. For each architecture, we consider the scenarios with and without co-channel interference for information transmission. We derive the expectation of the RF energy harvesting rate in closed form and also compute its variance. Moreover, we perform a worst-case study which derives the upper bound of both power and transmission outage probabilities. Additionally, we provide guidelines on the setting of optimal time-switching coefficient in the case of the time-switching architecture. Numerical results verify the correctness of the analysis and show various tradeoffs between parameter setting. Lastly, we prove that the RF-powered sensor performs better when the distribution of the ambient sources exhibits stronger repulsion.
机译:最近已经提出了环境射频(RF)能量收集技术,作为为无线设备提供主动能量补充的潜在解决方案。本文旨在分析采用随机几何方法通过环境射频能量收集供电的无电池无线传感器的性能。具体而言,我们考虑了随机几何网络中无线传感器的点对点上行传输,其中周围的RF源(例如移动发射设备,接入点和基站)作为吉尼伯决定点过程(DPP)进行分配)。 DPP能够捕获点之间的排斥,因此,它比泊松点过程(PPP)更通用。我们分析两种常见的接收器体系结构:分离的接收器体系结构和时间切换体系结构。对于每种体系结构,我们考虑具有和不具有同信道干扰的信息传输场景。我们得出封闭形式的RF能量收集速率的期望值,并计算其方差。此外,我们进行了最坏情况的研究,得出功率和传输中断概率的上限。此外,在时间切换架构的情况下,我们提供了有关最佳时间切换系数设置的指南。数值结果验证了分析的正确性,并显示了参数设置之间的各种折衷。最后,我们证明了当环境源的分布表现出较强的排斥力时,由RF供电的传感器性能更好。

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