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An interval approach to robust design with parameter uncertainty

机译:参数不确定性的稳健设计的区间法

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摘要

In robust design, it is common to estimate empirical models that relate an output response variable to controllable input variables and uncontrollable noise variables from experimental data. However, when determining the optimal input settings that minimise output variability, parameter uncertainties in noise factors and response models are typically neglected. This article presents an interval robust design approach that takes parameter uncertainties into account through the confidence regions for these unknown parameters. To avoid obtaining an overly conservative design, the worst and best cases of mean squared error are both adopted to build an optimisation approach. The midpoint and radius of the interval are used to measure the location and dispersion performances, respectively. Meanwhile, a data-driven method is applied to obtain the relative weights of the location and dispersion performances in the optimisation approach. A simulation example and a case study using automobile manufacturing data from the dimensional tolerance design process are used to demonstrate the effectiveness of the proposed approach. The proposed approach of considering both uncertainties is shown to perform better than other approaches.
机译:在稳健设计中,通常会估计经验模型,这些经验模型会根据实验数据将输出响应变量与可控制的输入变量和不可控制的噪声变量相关联。但是,在确定使输出可变性最小的最佳输入设置时,通常会忽略噪声因子和响应模型中的参数不确定性。本文提出了一种区间健壮的设计方法,该方法通过对这些未知参数的置信区域考虑了参数不确定性。为了避免获得过于保守的设计,均采用均方误差的最坏情况和最佳情况来构建优化方法。间隔的中点和半径分别用于测量位置和分散性能。同时,在优化方法中,采用数据驱动的方法来获得位置和分散性能的相对权重。仿真示例和使用尺寸公差设计过程中的汽车制造数据的案例研究证明了该方法的有效性。所提出的同时考虑两种不确定性的方法表现出比其他方法更好的性能。

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