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Optimal policies for two-user energy harvesting device networks with imperfect state-of-charge knowledge2014 Information Theory and Applications Workshop (ITA)

机译:充电状态知识不完善的两用户能量收集设备网络的最佳策略2014信息理论与应用研讨会(ITA)

摘要

Energy Harvesting Devices (EHDs) are enjoying continuously increasing popularity in Wireless Sensor Network research, due to their ability to “harvest” energy from the environment, thus allowing long-term and autonomous operation. Traditional approaches generally assume that the exact energy value of the State-of-Charge (SOC) of an EHD is known. In reality, batteries are practically composed by electro-chemical rechargeable elements or super-capacitors, where the estimation of the energy levels is a complex task. In this paper, we analyze operation policies able to maximize the long-term reward for a network consisting of a pair of EHDs and a central controller (CC), under imperfect knowledge of the SOC. More precisely, we suppose that the CC only knows whether each EHD is “LOW” or ”HIGH,”and has to determine the amount of energy devoted to the transmission over a shared wireless channel. We show that the performance degradation due to the imperfect knowledge of the SOC decreases with the battery capacity of the two nodes, and is practically negligible when this value is sufficiently high.
机译:能量收集设备(EHD)由于能够从环境中“收集”能量,因此可以长期且自主地运行,因此在无线传感器网络研究中正越来越受欢迎。传统方法通常假定EHD充电状态(SOC)的确切能量值是已知的。实际上,电池实际上是由电化学可充电元件或超级电容器组成的,其中能量水平的估算是一项复杂的任务。在本文中,我们分析了在不完全了解SOC的情况下能够最大化由一对EHD和一个中央控制器(CC)组成的网络的长期回报的运营策略。更准确地说,我们假设CC仅知道每个EHD是“低”还是“高”,并且必须确定专用于共享无线信道上传输的能量。我们表明,由于不完全了解SOC而导致的性能下降随着两个节点的电池容量的增加而降低,并且当该值足够高时,实际上可以忽略不计。

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