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A New Approach to Rank Several Multivariate Normal Populations with Application to Life Cycle Assessment

机译:一种对多个多元正态总体进行排名的新方法及其在生命周期评估中的应用

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The need to establish the relative superiority of each treatment when compared to all the others, i.e., ordering the underlying populations according to some pre-specified criteria, often occurs in many applied research studies and technical/business problems. When populations are multivariate in nature, the problem may become quite difficult to deal with especially in case of small sample sizes or unreplicated designs. The purpose of this work is to propose a new approach for the problem of ranking several multivariate normal populations. It will be theoretically argued and numerically proved that our method controls the risk of false ranking classification under the hypothesis of population homogeneity while under the nonhomogeneity alternatives we expect that the true rank can be estimated with satisfactory accuracy, especially for the best populations. Our simulation study proved also that the method is robust in the case of moderate deviations from multivariate normality. Finally, an application to a real case study in the field of life cycle assessment is proposed to highlight the practical relevance of the proposed methodology.
机译:与所有其他方法相比,需要确定每种方法的相对优越性,即根据一些预先指定的标准对基本人群进行排序,经常发生在许多应用研究和技术/业务问题中。当种群本质上是多元的时,尤其是在样本量较小或设计没有重复的情况下,该问题可能变得很难处理。这项工作的目的是为解决几个多元正态总体问题提出一种新方法。将在理论上进行论证并在数值上证明,我们的方法在人口同质性假设下控制了错误排名分类的风险,而在非均质性备选方案下,我们期望可以以令人满意的准确性估算真实排名,尤其是对于最佳人群。我们的仿真研究还证明,该方法在与多元正态性存在适度偏差的情况下具有鲁棒性。最后,提出了在生命周期评估领域的实际案例研究的应用,以强调所提出方法的实际相关性。

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