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Perfectly matched layer in numerical wave propagation: factors that affect its performance

机译:数值波传播中的完美匹配层:影响其性能的因素

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The perfectly matched layer (PML) boundary condition is generally employed to prevent spurious reflections from numerical boundaries in wave propagation methods. However, PML requires additional computational resources. We have examined the performance of the PML by changing the distribution of sampling points and the PML's absorption profile with a view to optimizing the PML's efficiency. We used the collocation method in our study. We found that equally spaced field sampling points give better absorption of beams under both optimal and nonoptimal conditions for low PML widths. At high PML widths, unequally spaced basis points may be equally efficient. The efficiency of various PML absorption profiles, including new ones, has been studied, and we conclude that for better numerical efficiency it is important to choose an appropriate profile.
机译:在波传播方法中,通常使用完全匹配层(PML)边界条件来防止数值边界的虚假反射。但是,PML需要其他计算资源。我们通过更改采样点的分布和PML的吸收曲线来检查PML的性能,以优化PML的效率。我们在研究中使用了搭配方法。我们发现,对于低PML宽度,在最佳和非最佳条件下,等距的场采样点都可以更好地吸收光束。在高PML宽度下,不等间距的基点可能同样有效。已经研究了各种PML吸收曲线的效率,包括新的PML吸收曲线,我们得出结论,为了获得更好的数值效率,选择合适的曲线非常重要。

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