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首页> 外文期刊>EPJ Applied Metamaterials >FDTD modeling of nonperiodic antenna located above metasurface using surface impedance boundary condition
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FDTD modeling of nonperiodic antenna located above metasurface using surface impedance boundary condition

机译:使用表面阻抗边界条件,位于Metasurface上方的非周期性天线的FDTD建模

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This paper investigates an FDTD modeling method for precisely calculating the characteristics of a single, that is, a nonperiodic antenna located above a metasurface that consists of an infinite periodic conducting element on a flat dielectric substrate. The original FDTD method requires enormous computational resources to analyze such structures because an appropriate periodic boundary condition (PBC) is not supported, and a brute force approach has to be used for this reason. Another option is to use the array scanning method in which a single source is synthesized from a superposition of infinite phased array of point sources. In this method, some problems such as a mutual coupling between the single antenna and the metasurface, a computational error contained in a numerical integration over the Brillouin zone and so on have not been resolved yet. In order to resolve these difficulties and to reduce computational resources, a surface impedance boundary condition (SIBC) is incorporated into the FDTD method in this paper. The validity of the method is numerically confirmed by calculating an input impedance and a radiation pattern of a horizontal dipole antenna located above the metasurface.
机译:本文研究了用于精确计算单个的特性的FDTD建模方法,即位于元表面上方的非周期性天线,其包括在平坦介电基板上的无限周期导电元件组成。原始的FDTD方法需要巨大的计算资源来分析这种结构,因为不支持适当的周期性边界条件(PBC),并且必须使用蛮力方法。另一种选择是使用阵列扫描方法,其中单个源是从无限相位的点源阵列的叠加合成的。在这种方法中,诸如单个天线和元表面之间的相互耦合等问题,尚未解决在布里渊区的数值集成中包含的计算误差。为了解决这些困难并降低计算资源,在本文中将表面阻抗边界条件(SIBC)掺入FDTD方法中。通过计算位于元表面上方的水平偶极天线的输入阻抗和辐射图案来用方法进行数值确认的方法。

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