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首页> 外文期刊>Proceedings of the IEEE >Discontinuous Galerkin Time-Domain Methods for Multiscale Electromagnetic Simulations: A Review
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Discontinuous Galerkin Time-Domain Methods for Multiscale Electromagnetic Simulations: A Review

机译:多尺度电磁仿真的不连续Galerkin时域方法:综述

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摘要

Efficient multiscale electromagnetic simulations require several major challenges that need to be addressed, such as flexible and robust geometric modeling schemes, efficient and stable time-stepping methods, etc. Due to the versatile choices of spatial discretization and temporal integration, discontinuous Galerkin time-domain (DGTD) methods can be very promising in simulating transient multiscale problems. This paper provides a comprehensive review of different DGTD schemes, highlighting the fundamental issues arising in each step of constructing a DGTD system. The issues discussed include the selection of governing equations for transient electromagnetic analysis, different basis functions for spatial discretization, as well as the implementation of different time-stepping schemes. Numerical examples demonstrate the advantages of DGTD for multiscale electromagnetic simulations.
机译:高效的多尺度电磁仿真需要解决几个主要挑战,例如灵活而强大的几何建模方案,高效且稳定的时间步长方法等。由于空间离散化和时间积分的多种选择,不连续的Galerkin时域(DGTD)方法在模拟瞬态多尺度问题方面可能非常有前途。本文对不同的DGTD方案进行了全面的回顾,重点介绍了在构建DGTD系统的每个步骤中出现的基本问题。讨论的问题包括瞬态电磁分析的控制方程的选择,空间离散化的不同基本函数以及不同时间步长方案的实现。数值示例证明了DGTD在多尺度电磁仿真中的优势。

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