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High Directivity Fabry–Perot Antenna With a Nonuniform Partially Reflective Surface and a Phase Correcting Structure

机译:具有非均匀部分反射表面的高方向性法布里 - 珀罗天线和相位校正结构

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In this communication, a superstrate for the high radiation performance of a Fabry–Perot antenna (FPA) is proposed that consists of a nonuniform partially reflective surface (NPRS) and a phase correcting structure (PCS). The NPRS and the PCS function to uniformize the amplitude and phase distributions, successively, of the FPA’s aperture field, thereby achieving a high directivity and a high aperture efficiency. Due to the independent amplitude and phase manipulations, the antenna design procedure is relatively rapid and effective. As a proof of concept, an FPA sample at an operating frequency of 5.8 GHz with a diameter of 200 mm is designed. The NPRS, comprising metallic square rings with dissimilar dimensions printed on a printed circuit board (PCB), is designed according to the leaky-wave method. A two-layer PCB structure is adopted as the PCS, which is designed by the transmission line model integrated with full-wave simulations. The FPA with the NPRS and the PCS is fabricated and measured for verification. The simulated and measured results are in good agreement. The directivity of the FPA with the proposed superstrate is 21.49 dB and the corresponding aperture efficiency is as high as 95.49% at 5.8 GHz.
机译:在这种通信中,提出了一种用于法布里 - 珀罗天线(FPA)的高辐射性能的超级辐射性能,其由不均匀的部分反射表面(NPRS)和相位校正结构(PC)组成。 NPRS和PCS函数以均匀地均匀化FPA孔径场的幅度和相位分布,从而实现高方向性和高孔径效率。由于独立的幅度和相位操纵,天线设计过程相对迅速且有效。作为概念证明,设计了5.8GHz的频率的FPA样品,直径为200毫米。包括在印刷电路板(PCB)上印有不同尺寸的金属方环的NPRS,根据泄漏波法设计。采用双层PCB结构作为PC,其由集成的全波模拟集成的传输线模型设计。使用NPRS和PCS的FPA制造和测量验证。模拟和测量结果非常一致。 FPA与所提出的超塑性的直率为21.49dB,相应的光圈效率高达5.8GHz的95.49%。

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