Analysis of Moving Bodies with a Direct Finite Difference Time Domain Method

M. Marvasti, H. Boutayeb
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Abstract

This paper proposes an original and thorough analysis of the behavior of electromagnetic waves in the presence of moving bodies by using the finite difference time domain (FDTD) method. Movements are implemented by changing positions of the objects at each time step, through the classical FDTD time loop. This technique is suitable for non-relativistic speeds, thus for most encountered problems in antennas and propagation domain. The numerical aspects that need to be considered are studied. Then, different bodies in motion are examined: plane wave source with matching resistors, observation point, inclined partially reflecting surface (PRS), line source, and metallic cylinder illuminated by a plane wave. The results are compared with those of special relativity which are considered as the references. Some aspects of special relativity are present in the direct FDTD approach, such as the independence of the velocity of electromagnetic wave propagation with the speed of the source and Lorentz local time (with a different physical interpretation). It is shown that the amplitude of the electric field for a moving plane wave source does not increase with the speed of motion, if the impedance of the source is small. Moreover, for a moving scattering metallic wire, one can observe a phenomenon similar to shock waves.
用直接有限差分时域法分析运动物体
本文采用有限差分时域(FDTD)方法,对存在运动物体时的电磁波行为进行了独创而透彻的分析。运动是通过经典的 FDTD 时间环路在每个时间步改变物体的位置来实现的。这种技术适用于非相对论速度,因此适用于天线和传播领域遇到的大多数问题。研究了需要考虑的数值问题。然后,研究了不同的运动物体:带匹配电阻的平面波源、观测点、倾斜的部分反射面(PRS)、线源和被平面波照射的金属圆柱体。研究结果与狭义相对论的结果进行了比较。狭义相对论的某些方面也存在于直接 FDTD 方法中,例如电磁波传播速度与声源速度和洛伦兹局部时间(具有不同的物理解释)无关。研究表明,如果移动平面波源的阻抗很小,则其电场振幅不会随移动速度而增加。此外,对于运动的散射金属线,我们可以观察到类似于冲击波的现象。
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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