A Broadband Wide-Angle Metasurface Absorber for Energy Harvesting Applications

Abdulrahman Ahmed Ghaleb Amer, S. Z. Sapuan, N. Nasimuddin, Mohd Fahrul Hassan
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引用次数: 3

Abstract

A broadband electromagnetic metasurface (MS) absorber with a wide-angle coverage is designed and discussed for energy harvesting applications. The proposed MS absorber consists of two split-ring resonators (SRR) forming an X-shaped in the middle and layout is designed on FR4 dielectric substrate. An air gap layer is separated between the dielectric substrate and a ground plane. At normal incidence, the proposed MS structure achieves a higher absorption ratio (>90%) with a 10-dB impedance bandwidth of more than 4 GHz (2.14 GHz-6.4 GHz). For oblique incidence, greater than 85% absorptivity is observed from $0^{\circ}, to 30^{\circ}$ across the frequencies range from 2.14 GHz to 6.4 GHz. Two higher absorption peaks of more than 80% at 2.4 GHz and from 5 GHz to 6.5 GHz for TEM polarization are achieved respectively at 45° and 60°. Furthermore, the absorption mechanism is numerically demonstrated in detail.
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用于能量收集的宽带广角超表面吸收器
设计并讨论了一种广角覆盖的宽带电磁超表面吸收器,用于能量收集。所提出的质谱吸收器由两个中间呈x形的分环谐振器(SRR)组成,并设计在FR4介质衬底上进行布局。在介电基板和接平面之间分离气隙层。在正常入射下,所提出的质谱结构具有较高的吸收比(>90%),10-dB阻抗带宽大于4 GHz (2.14 GHz-6.4 GHz)。对于斜入射,在2.14 GHz至6.4 GHz的频率范围内,从$0^{\circ}到$ 30^{\circ}$的吸收率大于85%。在45°和60°方向上,TEM极化在2.4 GHz和5 ~ 6.5 GHz处分别获得了超过80%的较高吸收峰。并对吸附机理进行了数值模拟。
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