Broadband meta-surface with polarization-insensitive and wide-angle for electromagnetic energy harvesting

Huiteng Zhong, Xue-xia Yang
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引用次数: 6

Abstract

A novel metamaterial surface with polarization-insensitive and wide-angle operating in a broadband is presented. The metamaterial cell consists of four same e-shaped Split-Ring Resonators (SRRs) arranged in rotating central symmetry. The structure is analyzed and optimized by using CST software. The harvesting efficiencies on the normal and oblique incidences, energy distribution and the S parameters are also investigated. The simulation results show that the maximum harvesting efficiency is 92% at 5.4 GHz with the HPBW (Half Power Beam Width) of 54% (4.7GHz–8.2GHz) for the random polarizations under the normal incidence. On the oblique incidence of 60°, the maximum efficiency is 98.2% and 57.6% for TM and TE modes, respectively. The meta-surface has been fabricated and measured to verify the effectiveness of the broadband, polarization-insensitive and wide-angle energy harvester.
用于电磁能量收集的偏振不敏感广角宽带元表面
提出了一种具有偏振不敏感和宽角度的新型超材料表面。超材料单元由四个相同的e形分裂环谐振器(srr)组成,以旋转中心对称的方式排列。利用CST软件对结构进行了分析和优化。研究了正入射和斜入射、能量分布和S参数对收获效率的影响。仿真结果表明,在正入射随机极化下,系统在5.4 GHz时的最大收获效率为92%,半功率波束宽度(HPBW)为54% (4.7GHz ~ 8.2GHz)。在60°斜入射下,TM和TE模式的最大效率分别为98.2%和57.6%。制作并测量了元表面,验证了宽带、偏振不敏感和广角能量收集器的有效性。
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