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A novel flat lens horn antenna designed based on zero refraction principle of metamaterials

机译:基于超材料零折射原理的新型平板透镜号角天线

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摘要

In this paper, a horn antenna filled with a metamaterial structure as lens inner the aperture is presented. Unlike conventional curve lenses, the lens is designed in the present work using a fully flat structure, which results in a great improvement for the directivity of the horn antenna based on the zero refraction characteristics of the metamaterial. In this structure, a periodic-structure metamaterial with three-layer metal grids is designed using the CST Microwave Studio for optimization and its zero refraction property is validated. For the characterization of the antenna, the electric-field distribution in radiation area, reflection parameter (S_(11)), gain and radiation pattern are calculated. The results show that the gain of a wide flare angle horn antenna is enhanced with over 2 dB between 16.10-17.30 GHz after the metamaterial is utilized. Therefore, the metamaterial lens horn structure results in a miniaturized antenna design approach compared to the optimum conventional horn of the same aperture size and gain in the interested frequency band.
机译:在本文中,提出了一种填充有超材料结构的号角天线,作为孔径内的透镜。与传统的曲面透镜不同,该透镜在本工作中使用完全平坦的结构设计,基于超材料的零折射特性,极大地改善了号角天线的方向性。在此结构中,使用CST Microwave Studio设计了具有三层金属网格的周期性结构超材料,以进行优化,并验证了其零折射特性。为了表征天线,计算了辐射区域中的电场分布,反射参数(S_(11)),增益和辐射方向图。结果表明,在使用超材料后,宽喇叭角天线的增益在16.10-17.30 GHz之间提高了2 dB以上。因此,与在感兴趣的频带中具有相同孔径大小和增益的最佳常规喇叭相比,超材料透镜喇叭结构导致了天线设计方法的小型化。

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