FDTD Modelling of Electromagnetic waves in Stratified Medium

N. Faruk, U. Gana
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引用次数: 4

Abstract

A time domain numerical procedure is presented for a simulation of electromagnetic wave phenomena. The technique is an adaptation of the finite-difference time domain (FDTD) approach usually applied to model electromagnetic wave propagation. In this paper a simple 2D  implementation of FDTD algorithm in mathematica environment is presented. Source implementation and the effect of conductivity on the incident field are investigated. Simple illustrations of propagation in a non-conducting, partial conducting and conducting medium are provided. For the computational space, Cartesian grids of fixed size were used as it makes grid generation to be relatively easy. The numerical data generated by the program code were sampled at various time steps from t0=1 to 90 along the computational space. The simulation results show the advancement of the pulse into the medium at various time stepping, shift in the peak of the amplitude was observed on the pulse for all the time steps. An attempt to further show the attenuation as the wave propagates into the stratified medium is made. The amplitude of the pulse falls sharply from 0.006 to 1x10 -11 for t0=1 and t0=50. The results indicate the working of the model and it could be used to study the behavior of the wave as it does propagate across the medium. Keywords: Stratified Medium, Finite Difference Time Domain (FDTD), mathematica, Maxwell’s Equations, Electromagnetic Waves (EM)
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层状介质中电磁波的时域有限差分模拟
提出了一种时域数值模拟电磁波现象的方法。该技术是对通常用于模拟电磁波传播的时域有限差分法的改进。本文给出了时域有限差分算法在mathematica环境下的一个简单二维实现。研究了源的实现和电导率对入射场的影响。提供了在不导电、部分导电和导电介质中传播的简单示例。对于计算空间,我们使用了固定尺寸的笛卡尔网格,这使得网格的生成相对容易。程序代码生成的数值数据沿计算空间以从t0=1到90的不同时间步长采样。仿真结果表明,脉冲在不同的时间步进过程中进入介质,在所有的时间步进过程中,脉冲的振幅峰值都发生了位移。试图进一步显示波在分层介质中传播时的衰减。当t0=1和t0=50时,脉冲振幅从0.006急剧下降到1x10 -11。结果表明,该模型是有效的,可以用来研究波在介质中传播时的行为。关键词:分层介质,时域有限差分,数学,麦克斯韦方程组,电磁波
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