散射问题中的高斯光束求和与高斯发射方法

P. O. Leye, A. Khenchaf, P. Pouliguen
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引用次数: 10

摘要

本文主要研究高斯波束求和技术在电磁仿真问题中的应用。高斯光束是亥姆霍兹方程在近轴近似内的渐近解。由于高频电磁波方程对射线过渡区不敏感,采用了几种基于高斯光束的方法来求解高频电磁波方程,部分或完全克服了奇异区(焦散、阴影区零场)的困难。本文重点研究了雷达目标散射电磁场的显式表达式。在这种方法中,当入射场照射到目标上时,散射用一个复杂的加权函数来计算。接收器上的波场被评价为高斯光束的叠加,这些光束集中在来自目标的射线附近,穿过接收器的邻居。
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The Gaussian Beam Summation and the Gaussian Launching Methods in Scattering Problem
This paper is mainly devoted to application of the Gaussian beam summation technique in electromagnetic simulations problem. Gaussian beams are asymptotic solutions of the Helmholtz equation within the paraxial approximation. Since they are insensitive to ray transition region, several techniques based on Gaussian beam are used to evaluate high frequency EM wave equation, which overcome partially or fully the difficulties of singular regions (caustics, zero field in shadow zones). This paper concentrates on the explicit formulation of the electromagnetic field scattered from radar target. In this approach, when the incident field illuminates the target, the scattering is accounted in a complex weighing function. The wave field at a receiver is evaluated as superposition of Gaussian beams concentrated close to rays emerging from the target, passing through the neighbor of the receiver.
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