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New Class of RCS-Reduction Metasurfaces Based on Scattering Cancellation Using Array Theory

机译:基于阵列理论的散射消除的新型RCS约化超表面

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A technique to synthesize a new category of radar cross-section (RCS)-reduction metasurfaces is presented. The appealing feature of the proposed technique is that by representing the generalized Snell-Descartes' law of reflection in the form of array factor, it unifies the two most widely studied and well-established modern RCS-reduction methods: checkerboard metasurfaces and gradient index metasurfaces. More importantly, it refines the concepts of both of these metasurfaces and overcomes numerous limitations associated with them. It can synthesize the RCS-reduction metasurfaces which can be placed along with almost any existing metasurface, without replacing the original metasurface that may be designed to serve a specific purpose, to reduce its RCS. The proposed technique is fundamentally based on scattering cancellation, and it is validated using artificial magnetic conductor technology for several configurations. Moreover, a phasor representation is developed and implemented for complex configurations to make the synthesis simpler and more insightful. Finally, to display the versatility of the proposed technique, an example of RCS-reduction metasurface has been synthesized and introduced to an existing high-gain metasurface ground plane available in the literature. This paper is confined to the conventional specular direction.
机译:提出了一种合成一类新的雷达截面(RCS)简化超表面的技术。所提出的技术的吸引人之处在于,通过以阵列因子的形式表示广义的斯涅尔-笛卡尔反射定律,它将两种研究最广泛且建立最完善的现代RCS简化方法统一在一起:棋盘形超表面和梯度指数超表面。更重要的是,它完善了这两个超表面的概念,并克服了与之相关的众多限制。它可以合成可与几乎所有现有元表面一起放置的RCS还原元表面,而无需替换可能设计用于特定目的的原始元表面以减少其RCS。所提出的技术从根本上基于散射消除,并且使用人工磁导体技术对几种配置进行了验证。此外,针对复杂的配置开发并实现了相量表示,以使合成更简单,更深入。最后,为了显示所提出技术的多功能性,已经合成了一个RCS减少超表面的例子,并将其引入文献中现有的高增益超表面地平面。本文仅限于常规的镜面方向。

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