Cylindrical-wave approach for line-source electromagnetic scattering by buried dielectric cylinders

F. Frezza, L. Pajewski, C. Ponti, G. Schettini
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引用次数: 1

Abstract

An analytical-numerical model for the electromagnetic characterization of GPR scenarios, with a line-source illumination field, is proposed. Solution is given in the spectral-domain, in the case of a two-dimensional geometry with dielectric scatterers buried in a semi-infinite medium. The source and scattered fields are represented by means of cylindrical-wave expansions; the concept of plane-wave spectrum of a cylindrical wave is used to describe the interaction of the fields with the air-soil interface, following the fundamentals of the Cylindrical Wave Approach. The proposed model has been implemented in a Fortran code and numerical results are presented. The electromagnetic field can be calculated both in the near and far region, for arbitrary size and position of the scatterers, and the method can deal with both the fundamental transverse-electric and transverse-magnetic polarization states.
埋藏介质圆柱体线源电磁散射的圆柱波方法
提出了一种线源光照场下探地雷达场景电磁特性的解析-数值模型。给出了介电散射体埋在半无限介质中的二维几何结构的谱域解法。源场和散射场用圆柱波展开表示;根据柱面波方法的基本原理,采用柱面波的平面波谱的概念来描述场与空气-土壤界面的相互作用。该模型已在Fortran代码中实现,并给出了数值结果。对于任意大小和位置的散射体,该方法可以计算近、远区域的电磁场,并且可以处理基本的横向电极化态和横向磁极化态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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