平面反射镜的变换光学设计与实现

Yijun Feng, Shuai Xiong, Bo O. Zhu, Junming Zhao, T. Jiang
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引用次数: 1

摘要

反射器是天线系统中用于获取特定定向辐射或提高天线增益的常用结构。在许多应用中,构造具有平面或低轮廓特征的反射器是非常理想的。本文提出了两种基于变换光学的低轮廓平面电磁波反射器的设计。通过简单的线性坐标变换,可以在均匀双折射介质构成的介质覆盖平面导电片上实现反向反射或抛物面反射,降低了实际实现的复杂性。这种简单的设计使我们能够在有效介质理论的基础上,通过常规介质的替代层来进一步实现反射器。在微波环境下的实际实现已通过全波电磁仿真得到验证,也证明了宽带性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and realization of planar reflectors through transformation optics
Reflectors are common structures utilized in antenna system to obtain specific directive radiation or to enhance antenna gain. It is quite desirable to construct reflectors with planar or low-profile features in many applications. In this paper, we present the design of two kinds of low-profile planar electromagnetic wave reflectors based on the transformation optics. By employing simple linear coordinate transformations, either a retrodirective reflector or a parabolic reflector can be achieved on planar conducting sheet with dielectric cover composed of homogeneous birefringent dielectric media, which reduces the complexity of practical realization. Such simple designs allow us to further realize the reflectors by alternative layers of normal dielectrics based on the effective medium theory. The practical realizations at microwave regime have been validated by full wave electromagnetic simulation, which also demonstrate broadband performance.
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