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Steerable ultra-thin directive antenna from a metamaterial-based subwavelength cavity

机译:基于超材料的亚波长腔可操纵的超薄定向天线

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We report the design of a steerable directive antenna using a resonant metamaterial-based subwavelength cavity. The cavity is made of a conventional ground plane and a composite metamaterial acting us a partially reflective surface. The antenna is a rectangular microstrip patch designed to operate near 10 GHz. The composite metamaterial is made of a variable capacitive grid and a constant inductive grid. Simulation and measurements show a deflection of the antenna beam of about plusmn20deg for a cavity of thickness about lambda/30.
机译:我们报告了使用基于超材料的共振亚波长腔的可控定向天线的设计。空腔由常规接地平面和作用于部分反射表面的复合超材料制成。天线是设计为可在10 GHz附近工作的矩形微带贴片。复合超材料由可变电容性网格和恒定电感性网格制成。仿真和测量结果表明,对于厚度约为λ/ 30的空腔,天线波束的偏转约为+ 20mn。

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