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Electromagnetic wave propagation along a thin wire over an arbitrary isotropic interface

机译:沿着任意各向同性界面的薄线沿着薄线传播电磁波传播

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The problem of a transmission line formed by an infinitely long and thin metal wire over a realistic ground surface (ground return effect) has been studied since the 20s of the last century. Solution to the problem implies determination of a complex propagation constant of a traveling wave, that is localized between the wire and the ground. However, analytical solutions were obtained only for a number of particular simplified models of the ground (e.g. an impedance surface or a lossy dielectric half-space). In this work, we introduce a new full-wave approach, which is suitable for determination of the propagation constant in the case of a thin infinite wire over an arbitrary isotropic interface. The interface is characterized by its reflection coefficients with respect to incident TE- and TM-polarized plane waves as functions of the normal component of the incident wave vector. We show that the propagation constant can be found as a root of the general characteristic equation, which is derived based on the Exact Image Theory and the Integral Equation technique. In order to verify the equation we study its asymptotic solutions for particular instances of an interface, for which the propagation constant is given by closed-form equations known from the literature.
机译:自上世纪20年代以来,已经研究了由现实地面(接地返回效果)的无限长的金属线形成的传输线的问题。解决问题的解决方案意味着确定行波的复杂传播常数,其在线和地之间的定位。然而,仅针对地面的一些特定简化模型获得分析溶液(例如,阻抗表面或有损介电半空间)。在这项工作中,我们引入了一种新的全波方法,其适用于在任意各向同性界面上的薄无限线的情况下确定传播常数。该界面的特征在于其反射系数相对于入射的TE和TM偏振平面波作为入射波向量的正常分量的功能。我们表明,可以基于精确的图像理论和积分方程技术来找到传播常数作为一般特征方程的根源。为了验证等式,我们研究其对界面特定情况的渐近解决方案,其中传播常数由文献中已知的闭合方程给出。

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