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An Improved Hierarchical Kriging for Variable-Fidelity Surrogate Modeling

机译:改进的分层克里金法用于可变保真度代理建模

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Variable-fidelity (VF) modeling methods have been widely used in complex engineering system design to mitigate the computational burden. However, the existing VF modeling methods do not make full use of the mutual information between high-fidelity (HF) and low-fidelity (LF) models which may lead to low accuracy VF model. In this paper, a global VF modeling method named improved hierarchical kriging (IHK) is proposed, in which LF model is varied though a polynomial response surface (PRS) function to capture the tendency of HF model, and HF sample points are used to ensure the accuracy of the VF model. A numerical example and the modeling of aerodynamic coefficient for an aircraft are provided to demonstrate the approximation capability of IHK as well as other two metamodeling methods. Results show that IHK provides more accurate metamodel at the same simulation cost, that is very important in metamodel-based engineering design problems.
机译:可变保真度(VF)建模方法已广泛用于复杂的工程系统设计中,以减轻计算负担。但是,现有的VF建模方法没有充分利用高保真(HF)模型和低保真(LF)模型之间的相互信息,这可能会导致低精度VF模型。本文提出了一种称为改进层次克里金法(IHK)的全局VF建模方法,其中通过多项式响应面(PRS)函数捕获HF模型的趋势来改变LF模型,并使用HF采样点来确保VF模型的准确性。通过数值算例和飞机空气动力学系数建模,证明了IHK的近似能力以及其他两种元建模方法。结果表明,IHK以相同的仿真成本提供了更准确的元模型,这在基于元模型的工程设计问题中非常重要。

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