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首页> 外文期刊>Journal of Electronic Materials >Metamaterial-Based Four-Band Electromagnetic Energy Harvesting at Commonly Used GSM and Wi-Fi Frequencies
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Metamaterial-Based Four-Band Electromagnetic Energy Harvesting at Commonly Used GSM and Wi-Fi Frequencies

机译:常用GSM和Wi-Fi频率的基于超材料的四带电磁能量收获

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摘要

A metamaterial-based energy harvesting structure for harvesting 0.90GHz, 1.80GHz, 2.60GHz GSM bands and a 5.80GHz Wi-Fi frequency band is numerically and experimentally demonstrated. The metamaterial unit cell consists of four nested split-ring resonators (SRRs) interconnected on their split parts. Three resistors are used to harvest electromagnetic waves, which are sent to the structure with the electric field vector polarized in parallel to the gap of the SRRs. Under normal excitation, electromagnetic energy harvesting efficiencies are found to be 85.7%, 82.0%, 80.4% and 69.8% at 0.90GHz, 1.80GHz, 2.60GHz and 5.80GHz, respectively, by numerical analyses. Surface current distributions are utilized to gain insight into the relation between the harvesting frequencies and the structure. The effect of incidence angle upon harvesting efficiencies shows that the increase of absolute angle of incidence has different consequences for each harvesting band. The harvesting efficiency is increased to be as high as approximately 90% at 2.60GHz and 5.80GHz when the incidence angle is increased to 30 degrees. The metamaterial sample is fabricated by conventional photolithography and the measured results in absorption performance are found to be in reasonable agreement with the numerical results. Moreover, it is demonstrated that the proposed metamaterial harvester structure has flexibility in terms of tailoring the harvesting frequencies and multi-band harvesting with more than four bands.
机译:用于收获0.90GHz,1.80GHz,2.60GHz GSM频段和5.80GHz Wi-Fi频段的超大型能量收集结构在数字和实验上表现出了5.80GHz Wi-Fi频段。超材料单元电池由四个嵌套的分圈谐振器(SRRS)组成,在其分割部件上互连。三个电阻器用于收获电磁波,其被送到结构,电场矢量与SRR的间隙平行偏振。在正常激发下,通过数值分析,发现电磁能量收集效率分别为0.90GHz,1.80GHz,2.60gHz和5.80GHz的85.7%,82.0%,80.4%和69.8%。表面电流分布用于深入了解收获频率与结构之间的关系。收获效率时的入射角的影响表明,对于每个收集带,绝对入射角的增加具有不同的影响。当入射角增加至30度时,收获效率增加到2.60GHz,5.80gHz的高达约90%。超材料样品通过常规光刻法制造,并且发现吸收性能的测量结果与数值结果合理一致。此外,证明所提出的超材料收割机结构在定制收获频率和多个带的多频带收获方面具有灵活性。

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