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Analytic Model of Coax-Fed Printed Metasurfaces and Analysis of Antenna Parameters

机译:同轴电联印刷元锉的分析模型及天线参数分析

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We present a model for waveguide-backed metasurface antennas fed by one or more coaxial ports and compute key antenna parameters using the model. The metasurface antenna consists of a coax-fed planar waveguide/cavity embedded with subwavelength-sized metamaterial radiators that convert energy from the guided mode into a radiated wave. Designing a metasurface requires tailoring the geometry of the individual metamaterial elements and arranging them over the aperture to achieve a desired radiation pattern-a typically cumbersome and time-consuming task when performed with full-wave solvers. In recent work, a coupled-dipole approach has been applied to modeling metasurfaces that significantly accelerates the design process by avoiding reliance on full-wave simulations or experimental trials. In this article, we extend the coupled-dipole model of a metasurface by including the analytic model of a coaxial port. Using the reaction and equivalent circuit model of a coaxial-to-waveguide transition, we also propose an efficient method to compute the input impedance of a metasurface, enabling the calculation of gain and efficiency. Close agreement between the proposed model and full-wave studies is demonstrated. The proposed method can find utility as an effective tool for the design and optimization of metasurfaces for applications including wireless communication systems, imaging, and wireless power transfer.
机译:我们为使用一个或多个同轴端口供给的波导背面的元表面天线和使用该模型计算密钥天线参数的模型。元表面天线包括嵌入具有亚体尺寸的超大辐射器的山型平面波导/腔,其将能量从引导模式转换为辐射波。设计元表面需要定制各个超材料元件的几何形状,并在用全波溶剂执行时实现期望的辐射图案-A通常粗略且耗时的任务。在最近的工作中,耦合偶极方法已经应用于建模的元措施,通过避免依赖于全波模拟或实验试验,显着加速设计过程。在本文中,我们通过包括同轴端口的分析模型来扩展元面的耦合 - 偶极模型。使用同轴 - 波导转换的反应和等效电路模型,我们还提出了一种有效的方法来计算质量表面的输入阻抗,从而实现增益和效率。拟议的模型与全波研究之间的密切一致性。所提出的方法可以找到实用程序作为用于包括无线通信系统,成像和无线电力传输的应用的元件的设计和优化的有效工具。

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