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首页> 外文期刊>AEU: Archiv fur Elektronik und Ubertragungstechnik: Electronic and Communication >Novel UWB printed metamaterial microstrip antenna based organic substrates for RF-energy harvesting applications
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Novel UWB printed metamaterial microstrip antenna based organic substrates for RF-energy harvesting applications

机译:用于RF-Energy收集应用的新型UWB印刷的超材料微带天线基础有机基板

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In this paper, an intensive study is proposed to recycle the organic materials use for microwave applications including RF-energy harvesting. Thus, the Iraqi Palme Tree Remnants (IPTR) is exemplified for this study to create dielectric substrates. The main texture of the fabricated substrates is IPTR mixed with Nickel Oxide Nanoparticles (NONP) hosted in Polyethylene (PE) to be called INP substrates. Nevertheless, a metamaterial (MTM) printed antenna on the proposed substrate is fabricated by material printer with Sliver Nanoparticles Conductive Ink (SNPCI). The antenna performance is tested numerically/experimentally in terms of S-11 spectrum and radiation patterns. It is found excellent matching bandwidths at 2.45 GHz and 5.8 GHz frequencies with acceptable gains of 1.56 dBi and 2.48 dBi, respectively. The proposed antenna bandwidth is found to start from 2.4 GHz up to more than 10 GHz. The maximum achieved gain and efficiency are found about 3.456 dBi and 78% at 9 GHz. For this, the proposed antenna provides novel performance with ultimate antenna size reduction due to the introduction of the MTM based the proposed INP substrate. Finally, the harvested RF energy by the fabricated antenna is measured and found about 15 mV with a conversation efficiency of 85% at 2.45 GHz and 17.5 mV with a conversion efficiency of 91% at 5.8 GHz. (C) 2019 Elsevier GmbH. All rights reserved.
机译:在本文中,提出了一种密集的研究,以回收用于微波应用的有机材料,包括RF-能量收集。因此,伊拉克棕榈树残余(IPTR)举例说明了该研究以产生介电基板。制造的基材的主要质地是与在聚乙烯(PE)中托管的氧化镍纳米颗粒(NONP)混合的IPTR被称为INP底物。然而,所提出的基板上的超材料(MTM)印刷天线由具有条子纳米粒子导电油墨(SNPCI)的材料打印机制造。在S-11光谱和辐射图案方面以数字/实验测试天线性能。它在2.45GHz和5.8 GHz频率下发现了出色的匹配带宽,分别具有1.56 dBi和2.48 dBi的可接受的收益。发现建议的天线带宽从2.4 GHz开始到超过10 GHz。在9 GHz下,最大达到的增益和效率达到约3.456 dBi和78%。为此,所提出的天线提供了具有最终天线尺寸的新颖性能,由于基于MTM的推出基于所提出的INP衬底。最后,测量制造天线的收获的RF能量,并发现约15mV,摊会效率为85%,在2.45GHz和17.5mV下,转化效率为5.8GHz。 (c)2019年Elsevier GmbH。版权所有。

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