Flat Lens Antenna Design Based on Metasurfaces with Printed Elements using Tensor Surface Impedance Model

Y. Tzabari, R. Shavit
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Abstract

This paper presents a novel method for surface impedance characterization for a metasurface with printed elements and arbitrary geometry. The modeling of the metasurface as a surface impedance simplifies the entire design cycle of a multilayer metasurface structure and enables analysis using transmission line theory. The proposed method is compared to HFSS simulations and very good agreement was obtained. Using the proposed model, a flat lens antenna based on a multilayer metasurface structure with printed elements that locally corrects the phase has been designed. The performance of the proposed lens in terms of radiation pattern and gain is satisfactory.
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基于张量面阻抗模型的平面透镜天线设计
本文提出了一种具有印刷元件和任意几何形状的超表面阻抗表征的新方法。超表面作为表面阻抗的建模简化了多层超表面结构的整个设计周期,并使使用传输线理论进行分析成为可能。将该方法与HFSS仿真进行了比较,得到了很好的一致性。利用该模型,设计了一种基于多层超表面结构的平面透镜天线,该天线具有局部相位校正功能。所提出的透镜在辐射方向图和增益方面的性能令人满意。
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