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首页> 外文期刊>IEEE Antennas & Propagation Magazine >Superbroadband Diffuse Wave Scattering Based on Coding Metasurfaces: Polarization Conversion Metasurfaces
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Superbroadband Diffuse Wave Scattering Based on Coding Metasurfaces: Polarization Conversion Metasurfaces

机译:基于编码元措施的超布线带漫射波散射:偏振转换元件

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摘要

In this article, a wideband metasurface for radar cross-section (RCS) reduction based on a polarization conversion is presented. The unit cell is composed of a two-layer metasurface based on frequency-selective surfaces (FSSs) backed by a thin-grounded dielectric substrate. The metasurface is able to rotate the polarization by 90 degrees using special binary elements "0" and "1" in combination. The elements are arranged using a binary coding matrix formed by a group search optimization (GSO) algorithm. The optimized arrangement resulted in the distribution of scattered electromagnetic (EM) waves and suppression of the maximum bistatic RCS of the metasurface over a broadband of incident angles for both polarizations. Additionally, a polarization conversion ratio (PCR) of nearly 131% with an efficiency higher than 90% is achieved. The reflective two-layer metasurface is designed in such a way to generate a reflection phase difference of 180 degrees between elements 0 and 1 on a broad frequency band. A theoretical analysis is performed on the ratio of the 0 and 1 elements using the least square error (LSE) method to find the best ratio value. The simulated and experimental results show that the structure can significantly reduce the RCS by 10 dB over a wide frequency range from 5.1 to 22.1 GHz (125%) at the normal incidence for both polarizations.
机译:在本文中,提出了基于极化转换的雷达横截面(RCS)降低的宽带元曲面。单元电池由基于薄接地介电基板的频率选择表面(FSS)的双层元表面构成。 METasurface能够使用特殊二进制元素“0”和“1”组合将极化旋转90度。使用由组搜索优化(GSO)算法形成的二进制编码矩阵来安排元件。优化的布置导致散射电磁(EM)波的分布和抑制在两极化的入射角的宽带上的质量表面的最大双静电RC。另外,实现了近131%的偏振转换比(PCR),效率高于90%。反射双层元表面是以这样的方式设计的,以在宽频带上产生元件0和1之间的180度的反射相位差。使用最小二乘误差(LSE)方法来对0和1元素的比率进行理论分析以找到最佳比率值。模拟和实验结果表明,该结构可以在宽频率范围内显着降低10dB的宽频率范围内的宽频率范围内的宽度范围内的宽度范围为5.1至22.1GHz(125%)。

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  • 来源
    《IEEE Antennas & Propagation Magazine》 |2019年第2期|40-52|共13页
  • 作者单位

    Concordia Univ Elect Engn Montreal PQ Canada|IEEE Piscataway NJ USA;

    Concordia Univ Elect Engn Montreal PQ Canada|IEEE Piscataway NJ USA;

    IEEE Piscataway NJ USA|Concordia Univ Dept Elect & Comp Engn Montreal PQ Canada;

    IEEE Piscataway NJ USA|Univ Quebec Inst Natl Rech Sci Montreal PQ Canada|Univ Quebec Dept Engn Rimouski PQ Canada;

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