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Homogenization Techniques for Improving the Calculations of Scattering by 1-D Fast Oscillating Periodic Surfaces

机译:一维快速振荡周期表面散射计算的均质化技术

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This paper deals with the efficient computation of scattering problems by fast oscillating periodic surfaces using two-scale expansion homogenization techniques. The proposed method splits the field between an effective field and a boundary layer corrector and applies an asymptotic expansion. Then, the evaluation of these boundary layers leads to the extraction of effective parameters, modeling the effects of the highly oscillating surface on the scattered field. A previous paper has already presented such a technique to deal with TM polarization. First, this paper extends the approach to TE polarization and completes it by pointing out all the key points. Especially it shows the map of the split fields underlining the physical contribution of each term. Second, this paper exposes and compares two different uses of these computed effective parameters. Numerical examples show the validity of the method, especially by justifying the asymptotic expansion ansatz. Computational efficiency is discussed.
机译:本文使用二阶展开均匀化技术,通过快速振荡周期表面来处理散射问题的有效计算。所提出的方法在有效场和边界层校正器之间划分场,并应用渐近展开。然后,对这些边界层的评估将导致有效参数的提取,从而对高振荡表面对散射场的影响进行建模。先前的论文已经介绍了这种处理TM极化的技术。首先,本文将方法扩展到TE极化,并指出所有关键点,以完善该方法。尤其是,它显示了划分字段的地图,强调了每个术语的物理作用。其次,本文揭示并比较了这些计算出的有效参数的两种不同用法。数值算例表明了该方法的有效性,特别是通过证明渐近展开ansatz是正确的。讨论了计算效率。

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