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A novel combination-type electromagnetic gradient metasurface for specular RCS reduction

机译:一种新型组合式电磁梯度超曲面,用于镜面RCS减小

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Electromagnetic Gradient Surface (EGS) has attracted considerable attention due to its unusual physical characteristics, showing great potential in radar cross section (RCS) reduction. In this paper, we provide a new approach to reduce radar cross section at boresight and present a design example of a novel hybrid electromagnetic gradient metasurface, which appears as a single sandwiched structure and is composed of a patterned metal square patch layer with variable sizes as the reflecting elements and a metal ground plane separated by a dielectric spacer The proposed metasurface is capable of suppressing the specular reflected wave by more than 17.5 dB under vertical polarization and 12.5 dB under horizontal polarization. More than 10 dB RCS reduction with bandwidth of nearly 1 GHz in a wide range of incident angle is realized at two polarizations effectively. Numerical simulation validates that this metasurface can redirect the scattered wave by adjusting the phase gradient and realize the specular RCS reduction, which shows great application potential in the area of radar anti-detection and exhibits a promising and flexible method to control the propagation of the EM wave.
机译:电磁梯度表面(EGS)由于其不寻常的物理特性而备受关注,在减小雷达截面(RCS)方面显示出巨大潜力。在本文中,我们提供了一种减少雷达视线横截面的新方法,并提出了一种新型混合电磁梯度超表面的设计示例,该表面以单层夹层结构的形式出现,由具有可变大小的图案化金属方形贴片层组成。反射元件和被电介质隔离物隔开的金属接地平面拟议的超表面能够将镜面反射波在垂直偏振下抑制超过17.5 dB,在水平偏振下抑制12.5 dB。在两个偏振态下,在宽入射角范围内,带宽接近1 GHz的RCS降低了10 dB以上。数值模拟验证了该超表面能够通过调节相位梯度来改变散射波的方向并实现镜面反射RCS的减小,这在雷达反探测领域显示出巨大的应用潜力,并展示了一种有前途和灵活的方法来控制电磁波的传播波。

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