The design of layered luneberg lens with radially-drilled-hole-structure

Xiaofeng He, Shiwen Yang, Long Yuan, Z. Nie
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Abstract

In this paper, a novel design method for layered concentric Luneberg lens with radially drilled holes in the low loss dielectrics is presented, based on the effective medium theories (EMT's). The radially-drilled-holes structure of the effective dielectric is illustrated and the formulas for calculating the dielectric constant are also presented. Base on the design method, a 30cm two-layered luneberg lens, operating at Ku/K band, is then designed, and a hemisphere lens with reflective ground plane is also taken into account in the design to reduce the profile height and the weight of the antenna. Simulated results are then presented. The gain/efficiency of the antenna is 31.0dBi/81.6% and 34.5dBi/67.9% at 12.5G and 20.45G respectively. It is shown that the lens made from this effective material with radially-drilled-hole structure has the advantage of low loss and isotropy as compared to those made from the traditional foamed dielectric.
径向钻孔结构层状luneberg透镜的设计
基于有效介质理论,提出了一种在低损耗介质中径向钻孔的层状同心圆吕内伯格透镜的设计方法。给出了有效介质的径向钻孔结构和介电常数的计算公式。在此设计方法的基础上,设计了工作在Ku/K波段的30cm双层luneberg透镜,并考虑了带反射地平面的半球透镜,以降低天线的轮廓高度和重量。然后给出了仿真结果。在12.5G和20.45G时,天线的增益/效率分别为31.0dBi/81.6%和34.5dBi/67.9%。结果表明,与传统的泡沫介质相比,用这种径向钻孔结构的有效材料制成的透镜具有低损耗和各向同性的优点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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