Wireless power transfer and communication for sensors: dynamic frame-switching (DFS) policy

Jingon Joung, Chin Keong Ho, Sumei Sun
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引用次数: 6

Abstract

Wireless sensors are key to machine-to-machine communications and serve as the basis for realizing the Internet of Things. Spectral and energy efficiencies are key parameters that determine the usefulness of a sensor. In this paper, we consider the scenario where both information and power are sent through the same wireless medium to sensors. Each sensor independently decides to switch between information decoding (ID) and energy harvesting (EH), comparing its received signal power with some given thresholds. The objective is to maximize the harvested energy subject to reliably decoding the data. We show that in many practical cases of interest, as the number of data frames (packets) increases, it is asymptotically optimal to use a single-threshold policy, in which the sensor uses ID if the received signal power is less than a fixed threshold, and EH otherwise.
传感器的无线电力传输和通信:动态帧交换(DFS)策略
无线传感器是机器对机器通信的关键,是实现物联网的基础。光谱和能量效率是决定传感器有用性的关键参数。在本文中,我们考虑了信息和电力通过相同的无线介质发送到传感器的场景。每个传感器独立决定在信息解码(ID)和能量收集(EH)之间切换,将接收到的信号功率与给定的阈值进行比较。目标是在可靠解码数据的前提下,最大限度地获取能量。我们表明,在许多感兴趣的实际情况下,随着数据帧(数据包)数量的增加,使用单阈值策略是渐近最优的,在这种策略中,如果接收到的信号功率小于固定阈值,传感器使用ID,否则使用EH。
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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