Adaptive Mesh Refinement for Time-Domain Numerical Electromagnetics

C. Sarris
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引用次数: 22

Abstract

Abstract This monograph is a comprehensive presentation of state-of-the-art methodologies that can dramatically enhance the efficiency of the finite-difference time-domain (FDTD) technique, the most popular electromagnetic field solver of the time-domain form of Maxwell's equations. These methodologies are aimed at optimally tailoring the computational resources needed for the wideband simulation of microwave and optical structures to their geometry, as well as the nature of the field solutions they support. That is achieved by the development of robust “adaptive meshing” approaches, which amount to varying the total number of unknown field quantities in the course of the simulation to adapt to temporally or spatially localized field features. While mesh adaptation is an extremely desirable FDTD feature, known to reduce simulation times by orders of magnitude, it is not always robust. The specific techniques presented in this book are characterized by stability and robustness. Therefore, they are excellen...
时域数值电磁学的自适应网格细化
摘要:本专著全面介绍了最先进的方法,这些方法可以显着提高时域有限差分(FDTD)技术的效率,FDTD是最流行的麦克斯韦方程组时域形式的电磁场求解器。这些方法旨在优化微波和光学结构的宽带模拟所需的计算资源,以适应其几何形状,以及它们所支持的现场解决方案的性质。这是通过开发鲁棒的“自适应网格划分”方法来实现的,这相当于在模拟过程中改变未知场量的总数,以适应时间或空间局部化的场特征。虽然网格自适应是一个非常理想的FDTD特性,已知可以减少数量级的模拟时间,但它并不总是鲁棒的。本书中介绍的具体技术的特点是稳定性和健壮性。因此,他们是优秀的……
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