旋转色散极好导电圆柱体对电磁波的散射

Esmail M M Abuhduma, G. Comert, Ahmed Elqaouaq, A. Reeves, W. Kellen
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引用次数: 1

摘要

本研究的重点是研究散射现象。研究了导体圆柱体材料为线性、均匀、各向同性和色散的情况下,从旋转导体圆柱体发出的电磁波的散射。本研究是先前研究了当极优导电圆柱的材料为线性、均匀、各向同性和非色散时,旋转极优导电圆柱对散射相位和振幅的影响的延伸。先前工作的一个重要结果是,富兰克林变换是一种更合适、更精确的计算旋转效应的方法,并且给出的结果比伽利略变换更精确。在本研究中,富兰克林变换将用于研究极好导电性物体的旋转对入射波的散射相位和大小的影响。这里将考虑两种入射波(e波和h波)。仿真结果将清楚地显示出散射相位和大小随入射频率、旋转速度和极导电性圆柱半径的变化规律。并将此结果与前人(非色散材料)的结果进行了比较,揭示了当入射频率、旋转速度和半径改变时,极导电性圆柱的散射相位和量级的变化规律。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Scattering of EM waves from a Rotating Dispersive Very Good Conducting Cylinder
This research focuses on studying the scattering phenomenon. Scattering electromagnetic waves from a rotating conducting cylinder is investigated when the material of the conducting cylinder is linear, homogeneous, isotropic, and dispersive. This study is an extension of a previous work that investigated the effect of the rotating very good conducting cylinder on the scattered phase and amplitude, when the material of the very good conducting cylinder is linear, homogeneous, isotropic, and nondispersive. One of the important result of the previous work is that the Franklin transformation is a proper and more accurate method to calculate the effect of the rotation, and gives more accurate results than Galilean transformation. In this research, the Franklin transformation will be used to investigate the effect of the rotation of the very good conducting object on the scattered phase and magnitude of the incident waves. The two types of incident waves (E-wave and H-wave) will be considered herein. The simulation results will clearly display the behavior of the scattered phase and magnitude with changes to the incident frequency, the speed of rotation, and the radius of the very good conducting cylinder. Moreover, this result is compared with the result of the previous work (non-dispersive material) to show the behavior of the scattered phase and magnitude when the incident frequency, speed of the rotation and radius of the very good conducting cylinder is changed.
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