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Anisotropic Metasurface-Based Beam-Scanning Dual-Polarized Fan-Beam Integrated Antenna System

机译:基于各向异性超表面的波束扫描双极化扇束集成天线系统

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This paper presents a novel anisotropic metasurface (AMS)-based integrated antenna system to facilitate dual-polarized fan-beam patterns with independent beam-scanning ability. In the proposed configuration, the antenna subsystem comprises a specially designed differentially fed microstrip patch antenna (source antenna) along with a polarization rotator (PR). The differential antenna arrangement is realized using a square shaped microstrip patch capacitively coupled with two metallic strips, which are connected to a specially designed wideband hybrid coupler using two metallic vias for the microstrip feeding. This source antenna is loaded with a PR by placing it at a height of 0.35 lambda(0) from the radiating aperture. The PR comprised two identical metallic layer patterns, separated by two substrates. Depending upon the relative orientation of these layers, the polarization of the linearly polarized impinging spherical electromagnetic (EM) waves (originating from the source antenna) either remains preserved or gets rotated by 90 degrees while transmitting through this PR. After realizing the antenna subsystem, a novel AMS lens is designed and placed above the PR. The proposed AMS lens is realized by integrating two cylindrical MS (CMS) lenses, CMSY and CMSX. This integration provides a unique phase profile to the AMS lens, thus introducing appropriate phase correction to the incident orthogonally polarized spherical EM waves along their respective polarization direction. The proposed configuration of AMS lens, thus, results into formation of the independent dual-polarized fan-beam radiation beams. Finally, the steering of the generated fan-beams along the direction of their respective polarization is facilitated using the proposed system by translating the AMS lens parallel to the source antenna.
机译:本文提出了一种新颖的基于各向异性超表面(AMS)的集成天线系统,该天线系统可实现具有独立波束扫描功能的双极化扇形波束图。在建议的配置中,天线子系统包括经过特殊设计的差分馈电微带贴片天线(源天线)以及极化旋转器(PR)。差分天线装置是通过与两个金属带电容耦合的方形微带贴片实现的,该两个金属带通过两个金属通孔连接到专门设计的宽带混合耦合器,用于微带馈电。通过将源天线放置在距辐射孔口0.35 lambda(0)的高度上,可以为其加载PR。 PR包括由两个基板分开的两个相同的金属层图案。根据这些层的相对方向,线性极化的撞击球面电磁(EM)波(源自源天线)的极化在通过此PR传输时要么保持不变,要么旋转90度。在实现天线子系统之后,设计了一种新型的AMS透镜并将其放置在PR上方。所提出的AMS镜头是通过集成两个柱面MS(CMS)镜头CMSY和CMSX来实现的。这种集成为AMS透镜提供了独特的相位分布,从而对入射的正交偏振球形EM波沿其各自的偏振方向进行了适当的相位校正。因此,建议的AMS透镜配置导致形成独立的双偏振扇形光束辐射束。最后,使用提出的系统,通过平行于源天线平移AMS透镜,可以使生成的扇形光束沿其各自的极化方向进行操纵。

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