DSP approach for time-domain modelling of wave-propagation in source-free frequency-dependent materials

O. Ramadan
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Abstract

An effective digital signal processing (DSP) approach is presented for the time-domain modeling of electromagnetic wave-propagation in source-free frequency-dependent materials. The formulations are based on incorporating the DSP algorithms developed for infinite-impulse response (IIR) digital filters into the finite difference time domain (FDTD) implementations of the dispersive Helmholtz wave-equation. The proposed formulations allow modeling different dispersive materials, such as Debye, Drude, and Lorentz models, in the same manner. The stability of the formulations was studied by means of the Routh-Hurwitz and von Neumann criterion and found to maintain the conventional FDTD stability constrains. In addition, the formulations maintain the same numerical performance of the conventional FDTD approach but with less number of computed field components. Numerical example carried out for a two-term Lorentz material is included to show the validity of the formulations.
无源频率相关材料中波传播时域建模的DSP方法
提出了一种有效的数字信号处理(DSP)方法,用于无源频率相关材料中电磁波传播的时域建模。该公式基于将用于无限脉冲响应(IIR)数字滤波器的DSP算法整合到色散亥姆霍兹波动方程的有限差分时域(FDTD)实现中。提出的公式允许以相同的方式模拟不同的分散材料,如德拜、德鲁德和洛伦兹模型。通过Routh-Hurwitz和von Neumann准则研究了配方的稳定性,发现它们保持了传统的FDTD稳定性约束。此外,该公式保持了与传统FDTD方法相同的数值性能,但计算的场分量数量较少。通过对两项洛伦兹材料的数值算例说明了公式的有效性。
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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