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Suppression of Specular Reflections by Metasurface with Engineered Nonuniform Distribution of Reflection Phase

机译:通过反射阶段的工程学不均匀分布抑制镜面曲面的镜面反射

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摘要

We make preliminary investigations on a new approach to reducing radar cross section (RCS) of conducting objects. This approach employs novel planar metasurfaces characterizing nonuniform distribution of reflection phase. The operation principle of this approach and the design rule of the associated metasurfaces are explained using a simplified theoretical model. We then present a design example of such metasurfaces, in which three-layer stacked square patches with variable sizes are utilized as the reflecting elements. The proposed RCS-reduction approach is verified by both numerical simulations and measurements on the example, under the assumption of normal plane wave incidence. It is observed that, in a fairly wide frequency band (from 3.6 to 5.5 GHz), the presented example is capable of suppressing the specular reflections of conducting plates significantly (by more than 7 dB) for two orthogonal incident polarizations.
机译:我们对减少导电物体的雷达横截面(RCS)的新方法进行初步调查。这种方法采用新的平面弥补表征反射阶段的非均匀分布。使用简化的理论模型解释了这种方法的操作原理和相关元核特征的设计规则。然后,我们介绍这种元件的设计示例,其中具有可变尺寸的三层堆叠方形贴片用作反射元件。在正常平面波入射的假设下,通过数值模拟和测量来验证所提出的RCS还原方法。观察到,在相当宽的频带(从3.6到5.5GHz)中,所提出的例子能够抑制两个正交入射偏振显着(超过7dB)的导电板的镜面反射。

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