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Space partitioning in engineering design via metamodel acceptance score distribution

机译:通过元模型验收分数分布进行工程设计中的空间划分

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摘要

Metamodels for simulators are used to reduce computational costs in engineering system design. In general, metamodels have different fit accuracy levels over different regions in the design variables space, especially for highly nonlinear responses over wide spaces. A metamodeling strategy should place less emphasis on sub regions in the design variables space requiring relatively less complex metamodels. In this paper, we present a graphically based methodology that can be used to partition the space for piecewise metamodel building. The method is based on analyzing an initial global metamodel for acceptability in terms of prediction accuracy over the whole space; then generating acceptance score distribution (ASD) plots. Visual inspection of the ASD plots is used as a guidance to partition the design variables space, leading to a metamodel with fair prediction accuracy on a piece-by-piece basis, not just globally on average. The proposed methodology is general and can be applied to various metamodel types. It is tested on a number of problems, including some of the most highly nonlinear test problems used in the literature.
机译:模拟器的元模型用于减少工程系统设计中的计算成本。通常,元模型在设计变量空间中的不同区域具有不同的拟合精度级别,尤其是对于宽空间中的高度非线性响应。元建模策略应较少强调设计变量空间中需要相对复杂的元模型的子区域。在本文中,我们提出了一种基于图形的方法,可用于分割用于分段元模型构建的空间。该方法基于分析整个全局初始模型的可接受性,以预测整个空间的准确性。然后生成验收分数分布(ASD)图。对ASD图的目视检查被用作划分设计变量空间的指南,从而形成了逐段具有合理预测精度的元模型,而不仅仅是平均而言。所提出的方法是通用的,并且可以应用于各种元模型类型。它针对许多问题进行了测试,包括文献中使用的一些最高度非线性的测试问题。

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