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Design and fabrication of a dual band 1.8/2.5 GHZ antenna for RF energy harvester

机译:用于射频能量采集器的双频段1.8 / 2.5 GHZ天线的设计与制造

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摘要

This paper proposes a patch antenna that integrated with the RF energy harvester system. The research goal is to propose a slotted and shorted pin patch antenna, which offers a promising solution for efficient dual band RF receiver. A high gain and directivity parameter is desired to reach the goal as it defines the strength of an antenna in capturing more energy and to maximize the transferred power towards the harvesting system. The fabricated antenna on RT/Duroid 5880 is measured to evaluate the simulated results by CST-MWS. The measure-ment is carried in an anechoic chamber. The measured dual antenna gain is 2.29 dBi and 5.51 dBi at 1.8 GHz and 2.5 GHz band, respective-ly. The gain obtained by the proposed antenna is higher compared to the previous patch antenna designs in the frequency range of 1 to 3 GHz, with reasonable matching parameter. The antenna meets the acceptable specifications in the bandwidth range of 0.1 to 2.45 GHz, ex-hibit top omnidirectional pattern, the VSWR 2 and the directivity 7 dBi across the dual band. Thus, the proposed antenna is good enough to be adopted with the RF energy harvester.
机译:本文提出了一种与RF能量收集器系统集成在一起的贴片天线。研究目标是提出一种缝隙短的针脚贴片天线,为高效双频RF接收器提供有希望的解决方案。需要一个高增益和方向性参数来达到该目标,因为它定义了天线在捕获更多能量时的强度,并使传递到收割系统的功率最大化。测量RT / Duroid 5880上的人造天线,以评估CST-MWS的仿真结果。测量在消声室中进行。在1.8 GHz和2.5 GHz频段上,测得的双天线增益分别为2.29 dBi和5.51 dBi。与以前的贴片天线设计相比,在合理的匹配参数的情况下,与以前的贴片天线设计相比,所提出的天线获得的增益更高。该天线在0.1到2.45 GHz的带宽范围内符合可接受的规格,显示出了全向最佳方向图,双波段的VSWR <2,方向性> 7 dBi。因此,建议的天线足够好,可以与RF能量采集器一起使用。

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