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A general approach for the stability analysis of the time-domain finite-element method for electromagnetic simulations

机译:电磁仿真时域有限元方法稳定性分析的一般方法

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摘要

This paper presents a general approach for the stability analysis of the time-domain finite-element method (TDFEM) for electromagnetic simulations. Derived from the discrete system analysis, the approach determines the stability by analyzing the root-locus map of a characteristic equation and evaluating the spectral radius of the finite element system matrix. The approach is applicable to the TDFEM simulation involving dispersive media and to various temporal discretization schemes such as the central difference, forward difference, backward difference, and Newmark methods. It is shown that the stability of the TDFEM is determined by the material property and by the temporal and spatial discretization schemes. The proposed approach is applied to a variety of TDFEM schemes, which include: (1) time-domain finite-element modeling of dispersive media; (2) time-domain finite element-boundary integral method; (3) higher order TDFEM; and (4) orthogonal TDFEM. Numerical results demonstrate the validity of the proposed approach for stability analysis.
机译:本文提出了一种用于电磁仿真的时域有限元方法(TDFEM)稳定性分析的通用方法。该方法源自离散系统分析,通过分析特征方程式的根轨迹图和评估有限元系统矩阵的光谱半径来确定稳定性。该方法适用于涉及分散介质的TDFEM仿真,并适用于各种时间离散化方案,例如中心差,前向差,后向差和Newmark方法。结果表明,TDFEM的稳定性取决于材料的特性以及时空离散方案。所提出的方法适用于各种TDFEM方案,包括:(1)时域有限元建模的分散介质; (2)时域有限元边界积分法; (3)高阶TDFEM; (4)正交TDFEM。数值结果证明了所提方法用于稳定性分析的有效性。

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