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Broadband Sub-Wavelength Profile High-Gain Antennas Based on Multi-Layer Metasurfaces

机译:基于多层超表面的宽带亚波长剖面高增益天线

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摘要

A method for designing sub-wavelength-profile and broadband high-gain planar antennas is presented. A novel multi-layer periodic array design is proposed for sub-wavelength Fabry-Perot cavity type antennas with enhanced bandwidth performance. Three double-sided periodic arrays are designed and optimized, each double-sided array consisting of a capacitive artificial impedance surface (AIS) and an inductive partially reflective surface (PRS) printed on either side of a dielectric substrate. They are placed at about sixth of a wavelength from a ground plane and from each other. Thus, three air cavities are created with a total profile of . The proposed antenna has been simulated using CST Microwave Studio and measured achieving 16.9 dBi directivity with 10.7% 3 dB bandwidth. The gain-bandwidth product of the proposed designs outperforms any previous Fabry-Perot antenna design with this profile.
机译:提出了一种设计亚波长剖面和宽带高增益平面天线的方法。提出了一种新颖的多层周期阵列设计,用于具有增强带宽性能的亚波长法布里-珀罗腔型天线。设计并优化了三个双面周期阵列,每个双面阵列由一个电容性人工阻抗表面(AIS)和一个印刷在介电基板两侧的电感性部分反射表面(PRS)组成。它们被放置在距接地平面彼此相距约六分之一波长处。因此,创建了三个空气腔,总轮廓为。拟议中的天线已使用CST Microwave Studio进行了仿真,并通过测量获得了16.9 dBi的方向性和10.7%3 dB的带宽。拟议设计的增益带宽乘积在此情况下优于任何以前的Fabry-Perot天线设计。

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