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Several Nominal Distances for Rotorcraft Gaussian Process Metamodels in the Presence of Categorical Alternatives

机译:存在分类选择的旋翼飞机高斯过程元模型的几个标称距离

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Designers desire to enable in early design stages more sophisticated but also computationally burdensome simulation tools to obtain better performing initial designs that are more valuable in subsequent design stages. The Hamming nominal distance has been used to build efficient Gaussian process metamodels, called mixed-integer-categorical (MIC) surrogates, that leverage trends which are similar across categorical alternatives in typical engineering objectives. This paper proposes and studies other nominal distances for constructing these MIC surrogates. These metamodels based on the proposed nominal distances are built and their performance indicators are compared when modeling a noise-free canonical function and the computationally noisy UH60A hover power consumption with a choice of several airfoil sections which represents the categorical variable. This paper shows that the use of the Hamming distance and the intrinsic distance, based on an underlying parametrization in the categorical variable, are the most efficient nominal distance for implementing MIC metamodels when approximating the noise-free canonical function and the UH60A hover power consumption.
机译:设计师希望在早期的设计阶段中启用更复杂但在计算上又麻烦的仿真工具,以获得性能更好的初始设计,这些初始设计在后续设计阶段中更有价值。 Hamming标称距离已用于建立有效的高斯过程元模型,称为混合整数-类别(MIC)替代物,该模型利用典型工程目标中跨类别替代方案相似的趋势。本文提出并研究了构建这些MIC替代物的其他标称距离。在建模无噪声规范函数和计算噪音过高的UH60A悬停功耗时,可以基于建议的标称距离构建这些元模型,并比较它们的性能指标,并可以选择几个代表机体变量的翼型截面。本文表明,在近似无噪声规范函数和UH60A悬停功耗时,基于分类变量中潜在参数的汉明距离和固有距离的使用是实现MIC元模型的最有效标称距离。

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