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首页> 外文期刊>IEE Proceedings. Part H >Finite difference solution of EM fields by asymptotic waveform techniques
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Finite difference solution of EM fields by asymptotic waveform techniques

机译:渐近波形技术的电磁场有限差分法

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摘要

A new finite difference technique for the solution of electromagnetic (EM) field problems is presented. It is based on complex-frequency hopping (CFH), which is an expanded asymptotic waveform evaluation approach proposed in the circuit simulation area with great success in solving large linear lumped and distributed circuits. The Maxwell's equations, as well as the special case-Helmholtz equations, are formulated into a set of linear ordinary differential equations by spatial finite difference, and the equations are solved by asymptotic waveform evaluation. The technique is guaranteed to be stable and offers potential speed up over existing finite difference approaches, for example, the finite difference frequency domain (FDFD) and the finite difference time domain (FDTD) for comparable accuracy. Examples of frequency-domain analysis of waveguides and dielectric cylinders are provided.
机译:提出了一种解决电磁场问题的新的有限差分技术。它基于复杂跳频(CFH),它是在电路仿真领域中提出的扩展渐近波形评估方法,在解决大型线性集总和分布式电路方面取得了巨大成功。通过空间有限差分,将麦克斯韦方程以及特殊情况的亥姆霍兹方程组化为一组线性常微分方程,并通过渐近波形求值法求解该方程。该技术被保证是稳定的,并且在现有的有限差分方法(例如,有限差分频域(FDFD)和有限差分时域(FDTD))上提供了可能的速度,以实现可比的精度。提供了波导和介电圆柱体的频域分析示例。

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