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Optimal Design of Miniaturized Reflecting Metasurfaces for Ultra-Wideband and Angularly Stable Polarization Conversion

机译:超宽带和角稳定偏振转换的微型反射超表面的优化设计

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摘要

An ultra-wideband linear polarization converter based on a reflecting metasurface is presented. The polarizer is composed by a periodic arrangement of miniaturized metallic elements printed on a grounded dielectric substrate. In order to achieve broadband polarization converting properties, the metasurface is optimized by employing a genetic algorithm (GA) which imposes the minimization of the amplitude of the co-polar reflection coefficient over a wide frequency band. The enhanced angular stability of the polarization converter is due to the miniaturized unit cell which is obtained by imposing the maximum periodicity of the metasurface in the GA optimization process. The pixelated polarization converter obtained by the GA exhibits a relative bandwidth of 102% working from 8.12 GHz to 25.16 GHz. The analysis of the surface current distribution of the metasurface led to a methodology for refining the optimized GA solution based on the sequential removal of pixels of the unit cell on which surface currents are not excited. The relative bandwidth of the refined polarizer is extended up to 117.8% with a unit cell periodicity of 0.46 mm, corresponding to λ/20 at the maximum operating frequency. The performance of the proposed ultra-wideband polarization metasurface has been confirmed through full-wave simulations and measurements.
机译:提出了一种基于反射超表面的超宽带线性偏振转换器。偏振器由印刷在接地电介质基板上的微型金属元件的周期性排列组成。为了获得宽带偏振转换特性,通过采用遗传算法(GA)对超表面进行优化,该遗传算法可将宽频带上的同极反射系数的幅度最小化。偏振转换器增强的角度稳定性归因于通过在GA优化过程中施加超颖表面的最大周期性而获得的最小化晶胞。通过GA获得的像素化偏振转换器在8.12 GHz至25.16 GHz的工作频率下具有102%的相对带宽。对超颖表面的表面电流分布的分析导致了一种方法,该方法可基于顺序去除晶格上未激发表面电流的像素来优化优化的GA解决方案。精制偏光片的相对带宽以0.46.mm的晶胞周期扩展至117.8%,对应于最大工作频率下的λ/ 20。通过全波模拟和测量已经证实了拟议的超宽带极化超表面的性能。

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