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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Electromagnetic scattering and radiation by surfaces of arbitrary shape in layered media. I. Theory
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Electromagnetic scattering and radiation by surfaces of arbitrary shape in layered media. I. Theory

机译:分层介质中任意形状的表面的电磁散射和辐射。一,理论

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摘要

An accurate and general procedure for the analysis of electromagnetic radiation and scattering by perfectly conducting objects of arbitrary shape embedded in a medium consisting of an arbitrary number of planar dielectric layers is developed. The key step in this procedure is a formulation of the so-called mixed-potential electric field integral equation (MPIE) that is amenable to an existing advanced solution technique developed for objects in free space and that employs the method of moments in conjunction with a triangular-patch model of the arbitrary surface. Hence, the goal is to immediately increase analysis capabilities in electromagnetics, yet remain compatible with the large existing base of knowledge concerning the solution of surface integral equations. Three alternative forms of the MPIE in plane-stratified media are developed, and their properties are discussed. One of the developed MPIEs is used to analyze scatterers and antennas of arbitrary shape that penetrate the interface between contiguous dielectric half-spaces.
机译:开发了一种精确而通用的方法,用于通过完美地传导嵌入到由任意数量的平面介电层组成的介质中的任意形状的物体来分析电磁辐射和散射。此过程的关键步骤是公式化所谓的混合势电场积分方程(MPIE),该方程适用于针对自由空间中的物体开发的现有高级求解技术,该方法将矩量法与惯性方法结合使用。任意曲面的三角形面片模型。因此,目标是立即提高电磁学的分析能力,同时与有关表面积分方程解的大量现有知识保持兼容。研究了平面分层介质中MPIE的三种替代形式,并讨论了它们的特性。已开发的MPIE之一用于分析穿透连续介电半空间之间的界面的任意形状的散射体和天线。

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