Design and evaluation of multi-band RF energy harvesting circuits and antennas for WSNs

L. M. Borges, Norberto Barroca, Henrique M. Saraiva, Jorge Tavares, Paulo T. Gouveia, F. Velez, Caroline Loss, Rita Salvado, P. Pinho, R. Gonçalves, N. Carvalho, R. Chávez-Santiago, I. Balasingham
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引用次数: 15

Abstract

Radio frequency (RF) energy harvesting is an emerging technology that will enable to drive the next generation of wireless sensor networks (WSNs) without the need of using batteries. In this paper, we present RF energy harvesting circuits specifically developed for GSM bands (900/1800) and a wearable dual-band antenna suitable for possible implementation within clothes for body worn applications. Besides, we address the development and experimental characterization of three different prototypes of a five-stage Dickson voltage multiplier (with match impedance circuit) responsible for harvesting the RF energy. Different printed circuit board (PCB) fabrication techniques to produce the prototypes result in different values of conversion efficiency. Therefore, we conclude that if the PCB fabrication is achieved by means of a rigorous control in the photo-positive method and chemical bath procedure applied to the PCB it allows for attaining better values for the conversion efficiency. All three prototypes (1, 2 and 3) can power supply the IRIS sensor node for RF received powers of -4 dBm, -6 dBm and -5 dBm, and conversion efficiencies of 20, 32 and 26%, respectively.
无线传感器网络多波段射频能量采集电路和天线的设计与评价
射频(RF)能量收集是一项新兴技术,可以在不使用电池的情况下驱动下一代无线传感器网络(wsn)。在本文中,我们提出了专门为GSM频段(900/1800)开发的射频能量收集电路和一种可穿戴双频天线,适合在衣服内实现,用于身体穿戴应用。此外,我们还讨论了负责收集射频能量的五级迪克森电压倍增器(带有匹配阻抗电路)的三种不同原型的开发和实验特性。不同的印刷电路板(PCB)制造技术产生不同的转换效率值。因此,我们得出结论,如果PCB制造是通过严格控制光正方法和应用于PCB的化学浴程序来实现的,它允许获得更好的转换效率值。所有三种原型(1、2和3)都可以为IRIS传感器节点供电,射频接收功率分别为-4 dBm、-6 dBm和-5 dBm,转换效率分别为20%、32%和26%。
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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