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A Fabry–Pérot Antenna With Two-Dimensional Electronic Beam Scanning

机译:二维电子束扫描法布里-佩罗特天线

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摘要

A novel fixed-frequency electronically steerable Fabry–Pérot Antenna (FPA) with electronic two-dimensional (2-D) (azimuth and elevation) steering capability is presented. The configuration is based on a centrally fed Fabry–Pérot cavity (FPC) loaded with a tunable high impedance surface (HIS). Varactor diodes are used to electronically tune the HIS reflection coefficient, forming four azimuthal sectors that are independently controlled by four control signals, respectively. It is demonstrated that this simple configuration generates a pencil beam that can be pointed to eight discrete azimuthal directions, whereas continuous elevation scanning is also attained simultaneously for each azimuthal direction by controlling the leaky-wave propagation constant. The theory, simulation analysis, and experimental results obtained from a prototype operating at 5.5 GHz are presented to validate the antenna design.
机译:提出了一种新颖的具有电子二维(2-D)(方位角和仰角)操纵能力的固定频率电子操纵Fabry-Pérot天线(FPA)。该配置基于中央馈送的Fabry-Pérot腔(FPC),该腔装有可调的高阻抗表面(HIS)。变容二极管用于电子调谐HIS反射系数,形成四个方位扇区,分别由四个控制信号独立控制。证明了这种简单的构造产生了可以指向八个离散的方位角方向的笔形光束,而通过控制泄漏波的传播常数,对于每个方位角方向也同时获得了连续的仰角扫描。提出了从工作在5.5 GHz的原型获得的理论,仿真分析和实验结果,以验证天线设计。

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