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Ultra-wideband, Wide Angle and Polarization-insensitive Specular Reflection Reduction by Metasurface based on Parameteradjustable Meta-Atoms

机译:超宽带,广角和偏振不敏感 基于参数可调节元原子的超颖曲面反射降低

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摘要

In this paper, an ultra-wideband, wide angle and polarization-insensitive metasurface is designed, fabricated, and characterized for suppressing the specular electromagnetic wave reflection or backward radar cross section (RCS). Square ring structure is chosen as the basic meta-atoms. A new physical mechanism based on size adjustment of the basic meta-atoms is proposed for ultra-wideband manipulation of electromagnetic (EM) waves. Based on hybrid array pattern synthesis (APS) and particle swarm optimization (PSO) algorithm, the selection and distribution of the basic meta-atoms are optimized simultaneously to obtain the ultra-wideband diffusion scattering patterns. The metasurface can achieve an excellent RCS reduction in an ultra-wide frequency range under x- and y-polarized normal incidences. The new proposed mechanism greatly extends the bandwidth of RCS reduction. The simulation and experiment results show the metasurface can achieve ultra-wideband and polarization insensitive specular reflection reduction for both normal and wide-angle incidences. The proposed methodology opens up a new route for realizing ultra-wideband diffusion scattering of EM wave, which is important for stealth and other microwave applications in the future.
机译:本文设计,制造并制造了一种超宽带,广角和偏振不敏感的超表面,用于抑制镜面电磁波反射或雷达后向横截面(RCS)。选择方环结构作为基本的亚原子。提出了一种基于基本原子尺寸调整的新物理机制,用于电磁波的超宽带处理。基于混合阵列模式合成(APS)和粒子群优化(PSO)算法,同时优化了基本亚原子的选择和分布,从而获得了超宽带扩散散射图。在x极化和y极化垂直入射情况下,超表面可以在超宽频率范围内实现出色的RCS降低。新提出的机制大大扩展了RCS减少的带宽。仿真和实验结果表明,对于正入射和广角入射,超颖表面都能实现超宽带和偏振不敏感的镜面反射减少。所提出的方法学为实现EM波的超宽带扩散散射开辟了一条新途径,这对于将来的隐形和其他微波应用很重要。

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