首页> 外文期刊>International journal for uncertainty quantifications >ASSESSING THE PERFORMANCE OF LEJA AND CLENSHAW-CURTIS COLLOCATION FOR COMPUTATIONAL ELECTROMAGNETICS WITH RANDOM INPUT DATA
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ASSESSING THE PERFORMANCE OF LEJA AND CLENSHAW-CURTIS COLLOCATION FOR COMPUTATIONAL ELECTROMAGNETICS WITH RANDOM INPUT DATA

机译:评估LEJA和CLENHAW-CORTIS搭配的计算电磁与随机输入数据的性能

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摘要

We consider the problem of quantifying uncertainty regarding the output of an electromagnetic field problem, in the presence of a large number of uncertain input parameters. In order to reduce the growth in complexity with the number of dimensions, we employ a dimension-adaptive stochastic collocation method based on nested univariate nodes. We examine the accuracy and performance of collocation schemes based on Clenshaw-Curtis and Leja rules, for the cases of uniform and bounded, nonuniform random inputs, respectively. Based on numerical experiments with an academic electromagnetic field model, we compare the two rules in both the univariate and multivariate cases and for both quadrature and interpolation purposes. Results for a real-world electromagnetic field application featuring high-dimensional input uncertainty are also presented.
机译:在存在大量不确定输入参数的情况下,我们考虑量化关于电磁场问题输出的不确定性的问题。为了降低复杂性的增长与尺寸的数量,我们采用基于嵌套单变量节点的维度自适应随机搭配方法。我们分别检查基于Clenshaw-Curtis和Leja规则的搭配方案的准确性和性能,分别用于均匀和有界,非均匀随机输入的情况。基于学术电磁场模型的数值实验,我们比较单变量和多变量案件的两条规则以及正交和插值目的。还提出了具有高维输入不确定性的实际电磁场应用的结果。

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