Statistical models for battery recharging time in RF energy harvesting systems

Dogay Altinel, Günes Karabulut-Kurt
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引用次数: 19

Abstract

This paper investigates the usage of radio frequency (RF) signal as a source in energy harvesting systems. The open issue in the related literature is the characterization of battery recharging time of an energy harvesting receiver node. RF energy harvesting has challenges due to the wireless propagation environment and conversion efficiency. On the propagation side, the different channel models between source and harvesting node should be taken into account in order to obtain realistic results. The main goal of this paper is to propose statistical models for battery recharging time for the Nakagami-m and the generalized-K fading channels. We also include the effects of lognormal shadowing. We derive the associated closed form probability density function, cumulative distribution function, moment generation function, mean and variance expressions for battery recharging time. The simulations are used to verify the theoretical results.
射频能量收集系统中电池充电时间的统计模型
本文研究了射频信号在能量收集系统中的应用。相关文献中的开放性问题是能量收集接收器节点的电池充电时间表征。由于无线传播环境和转换效率的原因,射频能量收集面临着挑战。在传播端,为了获得真实的结果,需要考虑到源和收获节点之间不同的信道模型。本文的主要目标是建立Nakagami-m和广义k衰落信道的电池充电时间统计模型。我们还包括对数正态阴影的影响。推导了电池充电时间的相关闭形式概率密度函数、累积分布函数、矩生成函数、均值和方差表达式。通过仿真对理论结果进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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