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DESIGN AND EXPERIMENTS OF A 3G-BAND RECTENNA FOR RADIO FREQUENCY ENERGY HARVESTING

机译:无线电频率能量采集的3G频段接收机的设计与实验

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RF energy harvesting is the process by which ambient electromagnetic energy from different sources in the environment is captured, converted and stored. It can provide an alternative energy capable of replacing, totally or partially, the batteries of a number of micro-systems and devices that have low energy requirements. In particular, solar energy harvesting has been commonly used to overcome this barrier. However, it should be noted that wireless sensor networks (WSN) operating on solar power suffer form energy shortage during nighttimes. Therefore, to solve this problem, we exploit the use of 3G broadcasts airwaves as energy sources to power wireless sensor nodes. This paper focuses on the design, optimization and experiments of 3G-band rectenna, based on a modified double slot coplanar waveguide (CPW) antenna. It contains also an RF-to-dc conversion circuit based on a zero bias Schottky diode SMS 7630. The reported rectenna have been fabricated and measured for 2100 MHz band. It achieves 400 mV voltage over an optimum load of 1700 Ω and about 50 % efficiency when the incident RF power is -7 dBm. The developed antenna is able to harvest the electromagnetic energy in several communication standards: GSM 900 and 1800, Universal Mobile Telecommunications System (UMTS), Long Term Evolution (LTE) and Wi-Fi. Numerical results and experiments are presented and discussed in this paper.
机译:射频能量收集是捕获,转换和存储来自环境中不同来源的周围电磁能的过程。它可以提供一种替代能源,该能源能够全部或部分替换能源需求低的许多微型系统和设备的电池。特别地,太阳能收集通常被用来克服该障碍。但是,应该注意的是,依靠太阳能运行的无线传感器网络(WSN)在夜间会出现能量短缺的情况。因此,为解决此问题,我们利用3G广播电波作为能源为无线传感器节点供电。本文基于改进的双缝共面波导(CPW)天线,着重于3G频段整流天线的设计,优化和实验。它还包含一个基于零偏置肖特基二极管SMS 7630的RF到DC转换电路。所制造的整流天线已针对2100 MHz频段进行了测量。当入射射频功率为-7 dBm时,它在1700Ω的最佳负载下可达到400 mV的电压,效率约为50%。研发的天线能够收集多种通信标准中的电磁能:GSM 900和1800,通用移动通信系统(UMTS),长期演进(LTE)和Wi-Fi。本文给出了数值结果和实验。

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