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An integer linear programing approach to find trend-robust run orders of experimental designs

机译:一个整数线性编程方法,用于查找实验设计的趋势稳健运行订单

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When a multifactor experiment is carried out over a period of time, the responses may depend on a time trend. Unless the tests of the experiment are conducted in proper order, the time trend has a negative impact on the precision of the estimates of the main effects, the interaction effects, and the quadratic effects. A proper run order, called a trend-robust run order, minimizes the confounding between the effects' contrast vectors and the time trend's linear, quadratic, and cubic components. Finding a trend-robust run order is essentially a permutation problem. We develop a multistage approach based on integer programing to find a trend-robust run order for any given design. The multistage nature of our algorithm allows us to prioritize the trend robustness of the main-effect estimates. In the literature, most of the methods used are tailored to specific designs and are not applicable to an arbitrary design. Additionally, little attention has been paid to trend-robust run orders of response surface designs, such as central composite designs, Box-Behnken designs, and definitive screening designs. Our algorithm succeeds in identifying trend-robust run orders for arbitrary factorial designs and response surface designs with two up to six factors.
机译:当在一段时间内进行多因素实验时,响应可能取决于时间趋势。除非实验的测试以适当的顺序进行,否则时间趋势对主要效应,相互作用效果和二次效应的估计的精度产生负面影响。适当的运行顺序,称为趋势稳健的运行顺序,最大限度地减少了效果“对比度向量和时间趋势的线性,二次和立方组件之间的混淆。找到趋势稳健的运行顺序基本上是一个排列问题。我们基于整数编程开发了一种多级方法,以找到任何给定设计的趋势稳健的运行顺序。我们算法的多级性质使我们能够优先考虑主要效应估计的趋势稳健性。在文献中,使用的大多数方法都针对特定设计量身定制,并且不适用于任意设计。此外,较少关注响应面设计的趋势强大的运行订单,例如中央复合设计,Box-Behnken设计和明确的筛选设计。我们的算法成功地识别任意因子设计的趋势强大的运行订单,以及两个最多六个因素的响应表面设计。

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