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首页> 外文期刊>Journal of Electromagnetic Waves and Applications >A six-band ultra-thin polarization-insensitive pixelated metamaterial absorber using a novel binary wind driven optimization algorithm
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A six-band ultra-thin polarization-insensitive pixelated metamaterial absorber using a novel binary wind driven optimization algorithm

机译:一种使用新型二元风驱动优化算法的六带超薄极化不敏感像素化超材料吸收器

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摘要

In this article, a novel binary Wind Driven Optimization (WDO) algorithm is presented for the synthesis of six-band Metamaterial Absorber (MA). Synthesis of the unit cell structure of MA is done by optimizing the presence of each unit pixel of pixelated Frequency Selective Surface (FSS). Numerical simulation of this optimized absorber shows six discrete bands of absorptions at 7.6, 10.1, 13.3, 14.7, 15.8 and 16.7 GHz with more than 90% absorptivity under normal incidence of the wave. The proposed absorber is ultra-thin, polarization insensitive and has good performance over a wide angle of incidence. The numerical simulation and experimental results are in close agreement.
机译:在本文中,提出了一种新的二元风驱动优化(WDO)算法,用于合成六带超材料吸收器(MA)。 通过优化像素化频率选择表面(FSS)的每个单位像素的存在来完成MA的单元电池结构的合成。 该优化吸收剂的数值模拟显示了7.6,10.1,13.3,14.7,15.8和16.7GHz的六个离散吸收带,在潮波的正常发生率下具有超过90%的吸收性。 所提出的吸收器是超薄的,极化不敏感的,并且在广泛的发病率下具有良好的性能。 数值模拟和实验结果紧密一致。

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