Radio-Frequency Energy Harvesting Systems for GSM and WiFi Bands

R. R. Shafiq, B. M. Elhalawany, M. M. Elsherbini
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引用次数: 1

Abstract

Energy harvesting (EH) circuits are expected to be key modules for future battery-constrained electronic devices such as mobile phones and wearable devices. Radio-frequency (RF) harvesting is one of the promising EH technologies, which converts RF signals into direct-current (DC) voltage. This paper proposed an efficient design for the voltage doubler subsystem for an RF-EH module using different types of Schottky diodes, namely HSMS-2822, HSMS-2850, and HSMS-286B. Greinacher voltage doubler circuits for multi-bands including 915 MHz (GSM), (2.4, and 5.2) GHz (WI-FI) bands are scrutinized. Up to 10 stages of Schottky diode voltage doubler circuits are investigated, where the performance is evaluated using Agilent ADS software. The results showed that the HSMS-286B Schottky diode reveals a better performance with GSM band sources, while HSMS-2850 is the Optimum choice for the WI-FI band.
GSM和WiFi频段的射频能量收集系统
能量收集(EH)电路有望成为未来电池受限的电子设备(如移动电话和可穿戴设备)的关键模块。射频(RF)采集是将射频信号转换成直流(DC)电压的一种很有前途的EH技术。本文提出了一种采用不同型号肖特基二极管HSMS-2822、HSMS-2850和HSMS-286B的RF-EH模块倍压子系统的高效设计方案。Greinacher倍压电路多频段,包括915mhz (GSM),(2.4和5.2)GHz (WI-FI)频段进行审查。高达10级肖特基二极管电压倍增电路的研究,其中性能评估使用安捷伦ADS软件。结果表明,HSMS-286B肖特基二极管在GSM频段信号源中表现出较好的性能,而HSMS-2850是WI-FI频段信号源的最佳选择。
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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