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Frequency selective surface for radio frequency energy harvesting applications

机译:用于射频能量收集应用的选频表面

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摘要

A novel application for frequency selective surfaces (FSSs) is presented. The novel FSS design can harvest power from arbitrarily polarised incident waves. The design does not involve a matching network, which results in a simple, polarisationindependent power harvester. An accurate analytical procedure, to calculate the impedance of the commercially available Schottky rectifiers, is presented. The results are validated by full-wave simulations and by measurements. A simple equivalent circuit model to predict the transmission and reflection characteristics of the gridded-square-loop FSS is employed. The design method is validated for different polarisations and for different incident angles. The addition of lumped elements (R, L, C) in the metallic conductive grid of the FSS is investigated. The waveguide simulator method and full-wave simulations are employed to validate the derived analytical equations. A 3 x 3 and a 5 x 5 RF harvesting FSS have been designed, simulated, fabricated and validated. A radio frequency (RF) to DC conversion efficiency of 25% for the 3 x 3 RF harvester and 15.9% for the 5 x 5 RF harvester is measured at an RF input power level of -6 dBm.
机译:提出了一种新型的频率选择表面(FSSs)应用。新颖的FSS设计可从任意极化的入射波中获取能量。该设计不包含匹配网络,这导致了一个简单的,与极化无关的功率收集器。提出了一种精确的分析程序,可以计算出市售的肖特基整流器的阻抗。通过全波模拟和测量来验证结果。采用了一个简单的等效电路模型来预测网格平方环FSS的透射和反射特性。设计方法针对不同的偏振和不同的入射角进行了验证。研究了在FSS的金属导电网格中添加集总元素(R,L,C)。使用波导模拟器方法和全波模拟来验证导出的解析方程。设计,模拟,制作和验证了3 x 3和5 x 5 RF采集FSS。在-6 dBm的RF输入功率水平下,对于3 x 3 RF收集器,射频(DC)转换为DC的效率为25%,5 x 5 RF收集器为15.9%。

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