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Distribution-Free Exceedance CUSUM Control Charts for Location

机译:位置的无分配超额CUSUM控制图

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Distribution-free (nonparametric) control charts can be useful to the quality practitioner when the underlying distribution is not known. A Phase Ⅱ nonparametric cumulative sum (CUSUM) chart based on the exceedance statistics, called the exceedance CUSUM chart, is proposed here for detecting a shift in the unknown location parameter of a continuous distribution. The exceedance statistics can be more efficient than rank-based methods when the underlying distribution is heavy-tailed and/or right-skewed, which may be the case in some applications, particularly with certain lifetime data. Moreover, exceedance statistics can save testing time and resources as they can be applied as soon as a certain order statistic of the reference sample is available. Guidelines and recommendations are provided for the chart's design parameters along with an illustrative example. The in- and out-of-control performances of the chart are studied through extensive simulations on the basis of the average run-length (ARL), the standard deviation of run-length (SDRL), the median run-length (MDRL), and some percentiles of run-length. Further, a comparison with a number of existing control charts, including the parametric CUSUM X chart and a recent nonparametric CUSUM chart based on the Wilcoxon rank-sum statistic, called the rank-sum CUSUM chart, is made. It is seen that the exceedance CUSUM chart performs well in many cases and thus can be a useful alternative chart in practice. A summary and some concluding remarks are given.
机译:当基础分布未知时,无分布(非参数)控制图可能对质量从业者有用。本文提出了一种基于超越统计量的Ⅱ相非参数累加和(CUSUM)图,称为超越CUSUM图,用于检测连续分布的未知位置参数的偏移。当基础分布为重尾和/或右偏时,超出统计量可能比基于秩的方法更有效,这在某些应用程序中尤其是某些寿命数据可能是这种情况。此外,只要参考样本的特定订单统计信息可用,就可以应用超出统计信息,因此可以节省测试时间和资源。提供了图表设计参数的准则和建议以及一个示例性示例。在平均游程长度(ARL),游程长度标准偏差(SDRL),中游程长度(MDRL)的基础上,通过广泛的模拟研究了图表的失控性能,以及游程长度的一些百分位数。此外,与许多现有控制图进行了比较,包括参数CUSUM X图和最近基于Wilcoxon秩和统计量的非参数CUSUM图,称为秩和CUSUM图。可以看出,超出CUSUM图表在许多情况下都可以很好地执行,因此在实践中可以成为有用的替代图表。给出了总结和一些总结性的评论。

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