首页> 外文会议>Progress in electromagnetics research symposium 2005 (PIERS 2005) >Scattering of Electromagnetic Waves from Vibrating Perfect Surfaces: Simulation Using Relativistic Boundary Conditions
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Scattering of Electromagnetic Waves from Vibrating Perfect Surfaces: Simulation Using Relativistic Boundary Conditions

机译:振动的完美表面对电磁波的散射:使用相对论边界条件的模拟

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摘要

One-dimensional numerical simulation of electromagnetic waves scattered from vibrating perfect conductor is reported in this paper. The computational results are generated by the method of characteristics with the application of the relativistic and characteristic variable boundary conditions. The perfect conductor may oscillate either in zigzag or sinusoidally. For easy observation of oscillatory effects on the reflected electromagnetic waves,objects are set to vibrate at a very high frequency with constant amplitude such that the extreme instantaneous velocity is about one tenth of the speed of light. The numerical calculations show that the reflected electric fields bear the oscillatory characteristics of the vibrating perfect conductor and that the change in magnitude are in agreement with the theoretical Doppler shift values.
机译:本文报道了从振动完美导体中散射出来的电磁波的一维数值模拟。应用相对论和特征变量边界条件通过特征方法生成计算结果。理想的导体可以呈锯齿形或正弦形振荡。为了易于观察反射电磁波的振荡效应,将对象设置为以恒定的幅度以非常高的频率振动,以使瞬时瞬时速度约为光速的十分之一。数值计算表明,反射电场具有振动的理想导体的振荡特性,其大小变化与理论多普勒频移值一致。

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