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首页> 外文期刊>Electromagnetic Compatibility, IEEE Transactions on >A Circular-Ring Miniaturized-Element Metasurface With Many Good Features for Frequency Selective Shielding Applications
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A Circular-Ring Miniaturized-Element Metasurface With Many Good Features for Frequency Selective Shielding Applications

机译:具有许多优良特性的频率选择性屏蔽应用的圆环小型化元件超表面

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摘要

A novel circular-ring miniaturized-element (CRME) metasurface is proposed for frequency selective electromagnetic shielding applications in this paper. The proposed structure exhibits good performance in many aspects. The CRME size can be easily reduced to , where is the wavelength at resonance. Such small size can be useful in applications with limited space. The newly proposed metasurface not only shows the stability to incidence angles and polarizations, but also demonstrate negligible polarization crossing. The metasurface also presents low coupling between elements, which leads to the insensitivity of periodicity fluctuation in fabrication process. Moreover, the frequency responses can be varied through the modification of the element pattern of the metasurface. It provides flexible frequency responses to use in frequency selective shielding applications. Also, this element is suitable for constructing a metasurface aligned in either square or even hexagonal lattice, which owns the best adaptability to a doubly curved surface or a spherical one. Without revising the CRME, both the square- and hexagonal-lattice metasurfaces constructed can perform competently at the same time. Finally, the metasurface prototype is fabricated and tested in a fully anechoic chamber to verify the design. The measured results well agree with the simulated ones.
机译:本文提出了一种新颖的圆环小型化元件(CRME)超表面,用于频率选择性电磁屏蔽应用。所提出的结构在许多方面表现出良好的性能。 CRME大小可以轻松地减小到,即共振波长。如此小的尺寸在空间有限的应用中可能有用。新提出的超颖表面不仅显示出对入射角和极化的稳定性,而且显示出可忽略的极化穿越。超表面还表现出元件之间的低耦合,这导致制造过程中周期性波动的不敏感性。此外,可以通过修改超表面的元素图案来改变频率响应。它提供灵活的频率响应,可用于频率选择性屏蔽应用。而且,该元件适合于构造以正方形或什至六边形格子对齐的超颖表面,该超颖表面对双曲面或球形曲面具有最佳适应性。在不修改CRME的情况下,构造的方形和六边形超晶格表面都可以同时发挥出色的性能。最后,超表面原型被制造出来并在完全消声的室内进行测试以验证设计。测量结果与模拟结果吻合良好。

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