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首页> 外文期刊>IEEE microwave and wireless components letters >Implementation of a First-Order ABC in Mixed Finite-Element Time-Domain Formulations Using Equivalent Currents
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Implementation of a First-Order ABC in Mixed Finite-Element Time-Domain Formulations Using Equivalent Currents

机译:使用等效电流在混合有限元时域公式中实现一阶ABC

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摘要

In this letter, we describe an easy approach to implement the first-order Bayliss-Turkel-like absorbing boundary condition (ABC) in two mixed finite-element time-domain (FETD) formulations, namely the Crank–Nicolson FETD (CN-FETD) and the leap-frog FETD (LF-FETD). The idea is to introduce a current source distribution on the outer boundary of the domain such that it cancels outgoing waves. The current distribution is obtained based on the ABC relation. In addition, we show that the CN-FETD and the LF-FETD are equivalent to the FETD based on the vector wave equation discretized by the Newmark- $beta$ method in time with $beta=1/4$ and 0, respectively. Having utilized these equivalences, we demonstrate that our approach to implement the ABC in the mixed formulations lead to the same result as the vector wave FETD truncated with the same ABC. A numerical example is provided to validate our formulations.
机译:在这封信中,我们描述了一种在两种混合的有限元时域(FETD)公式中实现一阶Bayliss-Turkel类吸收边界条件(ABC)的简便方法,即Crank-Nicolson FETD(CN-FETD) )和跳越式FETD(LF-FETD)。这个想法是在域的外边界上引入电流源分布,从而消除输出波。根据ABC关系获得电流分布。此外,我们显示了基于Newmark- <公式Formulatype =“ inline”> $ beta $离散化的矢量波方程,CN-FETD和LF-FETD等效于FETD。 方法与时间分别为 $ beta = 1/4 $ 和0。利用这些等效性,我们证明了在混合配方中实施ABC的方法所产生的结果与矢量波FETD被相同的ABC截断的结果相同。提供了一个数值示例来验证我们的配方。

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