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Semiparametric Exact Optimal Run Orders

机译:半参数精确最佳运行顺序

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摘要

When performing an experiment,the observed responses are often influenced by a temporal trend possibly due to aging of material,learning effects,equipment wear-out,or warm-up effects.The construction of run orders that are optimally balanced for time trend effects usually relies on the incorporation of a parametric representation of the time dependence.Using a parametric approach works very well as long as the unknown time dependence is properly specified or overspecified.However,for complicated temporal trends of unknown periodicity,or when the design size is small compared to the complexity of the response model,a parametric approach may lead to underspecification of the true time trend.Serious problems of bias can result.In this paper we show that,contrary to a fully parametric approach with an underfitted time trend,modeling the time trend nonparametrically is very attractive in terms of both bias and precision of the parameter estimators.An algorithm is presented for the construction of optimal run orders when kernel smoothing is used to model the temporal trend.An industrial example illustrates the practical utility of the proposed design methodology.
机译:在进行实验时,观察到的响应通常受时间趋势的影响,这可能是由于材料的老化,学习效果,设备磨损或预热效果引起的。通常为时间趋势效果最佳平衡的运行顺序的构建依赖于时间依赖性的参数表示的合并。只要正确地指定或过度指定了未知时间依赖性,使用参数方法就可以很好地工作。但是,对于未知周期性的复杂时间趋势,或设计尺寸较小时与响应模型的复杂性相比,参数化方法可能会导致真实时间趋势的规格不足。可能会导致严重的偏差问题。本文显示,与时间不拟合的完全参数化方法相反,该方法可以对模型进行建模。就参数估计量的偏差和精度而言,非参数时间趋势非常有吸引力。提出了一种构造算法当使用核平滑法对时间趋势进行建模时,最佳运行顺序的最佳选择。一个工业实例说明了所提出的设计方法的实际实用性。

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