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Developing Metamodels for Fast and Accurate Prediction of the Draping of Physical Surfaces

机译:开发元模型以快速准确地预测物理表面的垂降

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In this paper, the use of methods from the meta-or surrogate modeling literature, for building models predicting the draping of physical surfaces, is examined. An example application concerning modeling of the behavior of a variable shape mold is treated. Four different methods are considered for this problem. The proposed methods are difference methods assembled from the methods kriging and proper orthogonal decomposition (POD) together with a spline-based underlying model (UM) and a novel patchwise modeling scheme. The four models, namely kriging and POD with kriging of the coefficients in global and local variants, are compared in terms of accuracy and numerical efficiency on data sets of different sizes for the treated application. It is shown that the POD-based methods are vastly superior to models based on kriging alone, and that the use of a difference model structure is advantageous. It is demonstrated that patchwise modeling schemes, where the complete surface behavior is modeled by a collection of locally defined smaller models, can provide a good compromise between achieving good model accuracy and scalability of the models to large systems.
机译:在本文中,研究了使用元或替代建模文献中的方法来建立预测物理表面悬垂的模型的方法。处理了有关可变形状模具行为建模的示例应用程序。针对此问题考虑了四种不同的方法。所提出的方法是由方法kriging和适当的正交分解(POD)以及基于样条的基础模型(UM)和新颖的逐块建模方案组合而成的差分方法。比较了四种模型,即克里金法和POD以及全局和局部变量系数的克里金法,针对所处理应用程序在不同大小的数据集的准确性和数值效率方面进行了比较。结果表明,基于POD的方法远远优于仅基于克里金法的模型,并且使用差异模型结构是有利的。结果表明,逐块建模方案(通过局部定义的较小模型的集合对整个表面行为进行建模)可以在实现良好的模型精度和模型对大型系统的可伸缩性之间取得良好的折衷。

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