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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >A subgridding method for the time-domain finite-difference method to solve Maxwell's equations
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A subgridding method for the time-domain finite-difference method to solve Maxwell's equations

机译:时域有限差分法求解麦克斯韦方程组的子网格方法

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摘要

A modification to the time-domain finite-difference method (TDFDM) that uses a variable step size is investigated. The entire computational volume is divided into a coarse grid with a large step size. A fine grid with a small step size is introduced only around discontinuities. The corresponding time increments are related to the spatial increments with the same ratio in order to minimize the numerical dispersion. The fields within the coarse and fine grids are found using the TDFDM, while an interpolation in space and time is utilized to calculate the tangential electric field on the coarse-fine grid boundary. This subgridding decreases the required computer memory and therefore expands the capability of the TDFDM. The technique is shown to be numerically stable and does not entail any extra numerical error. The method is applied to the calculation of waveguides and microstrips.
机译:研究了使用可变步长的时域有限差分方法(TDFDM)的修改。整个计算量被分为步长较大的粗网格。仅在不连续点周围引入步长较小的精细网格。为了使数值离散最小,相应的时间增量与具有相同比率的空间增量相关。使用TDFDM可以找到粗网格和细网格内的场,同时利用空间和时间的插值来计算粗网格边界上的切向电场。此子网格减少了所需的计算机内存,因此扩展了TDFDM的功能。该技术显示出数值上的稳定性,并且没有任何额外的数值误差。该方法适用于波导和微带的计算。

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