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A Finite Element Time-Domain Algorithm Based on the Alternating-Direction Implicit Method

机译:基于交替方向隐式方法的有限元时间域算法

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We present an implicit finite element time-domain (FETD) solution of the Maxwell equations. The time-dependent formulation employes a time-integration method based on the alternating-direction implicit (ADI) method. The ADI method is directly applied to the Maxwell equations in order to obtain an unconditionally stable FETD approach. The method uses edge elements for electric field and facet elements for magnetic flux density. The advantage of this formulation based on the ADI scheme is that the time step is no longer governed by the spatial discretization of the mesh, but rather by the spectral content of the time-dependent signal. Numerical formulations are presented and simulation results are compared to those using the conventional FETD method.
机译:我们介绍了Maxwell方程的隐式有限元时间域(FETD)解决方案。时间依赖的制剂采用基于交替方向隐式(ADI)方法的时间积分方法。 ADI方法直接应用于MaxWell方程,以获得无条件稳定的FETD方法。该方法使用用于磁通密度的电场和小桨元件的边缘元件。基于ADI方案的该配方的优点是时间步长不再被网格的空间离散化来控制,而是通过时间相关信号的光谱内容来控制。提出了数值制剂,并将仿真结果与使用常规FETD方法进行了比较。

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