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A Discontinuous Galerkin Time-Domain Integral Equation Method for Electromagnetic Scattering From PEC Objects

机译:PEC对象电磁散射的不连续Galerkin时域积分方程方法

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摘要

A discontinuous Galerkin time-domain integral equation (DG-TDIE) method based on the marching-on-in-time (MOT) scheme is presented to analyze the transient scattering from arbitrarily shaped perfect electrically conducting (PEC) objects. In this paper, the mono-polar Rao–Wilton–Glisson (RWG) functions are chosen as the trial and the test spatial functions, while the triangular basis functions are for the temporal expansion. Therefore, it is flexible and convenient to analyze objects with nonconformal discretization or targets containing more than three surfaces in contact with each other. Numerical results are presented to demonstrate the accuracy and the efficiency of the DG-TDIE method.
机译:提出了一种基于时间行进(MOT)方案的不连续Galerkin时域积分方程(DG-TDIE)方法,以分析任意形状的理想导电(PEC)物体的瞬态散射。在本文中,选择单极Rao–Wilton–Glisson(RWG)函数作为试验和测试空间函数,而三角形基函数用于时间扩展。因此,灵活而方便地分析具有非共形离散的对象或包含三个以上彼此接触的表面的目标。数值结果表明了DG-TDIE方法的准确性和有效性。

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