具有单极馈入的各向异性超材料透镜,用于高增益多光束辐射

Z. Jiang, D. Werner
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引用次数: 6

摘要

本文介绍了一种用于天线的各向异性超材料透镜的原理和设计。这种透镜需要简单的有效介质张量参数来实现高度定向的辐射光束,这与传统的各向同性零折射率超材料透镜不同。利用色散较小的低介电常数和/或磁导率带,该透镜有望用于宽带应用。设计了一种磁导率张量参数小于1的特殊超材料透镜,用于单极天线的辐射方向图裁剪。全波仿真结果表明,该透镜在20%的带宽范围内实现了高增益的四波束辐射方向图,并且在50% ~ 10dB的带宽展宽范围内改善了回波损耗。该装置能够实现高度定向发射和波束整形,在无线通信系统中具有潜在的应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Anisotropic metamaterial lens with a monopole feed for high-gain multi-beam radiation
In this paper, we present both the theory and design of an anisotropic metamaterial lens for antenna applications. This type of lens requires simple effective medium tensor parameters to achieve highly-directive radiated beams, which differs from more conventional isotropic zero-index metamaterial lenses. Making use of the less dispersive low permittivity and/or permeability band, the lens is promising for wideband applications. A specific metamaterial lens with permeability tensor parameter values that are less than unity was designed to tailor the radiation pattern of a monopole antenna. Full-wave simulations show that the lens achieves a high-gain quad-beam radiation pattern over a 20% bandwidth and also improves the return loss with a 50% −10dB bandwidth broadening. This device enables highly-directive emission and beam shaping with potential application in wireless communication systems.
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