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Optimal design of the adaptive exponentially weighted moving average control chart over a range of mean shifts

机译:均值范围内的自适应指数加权移动平均控制图的优化设计

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The adaptive exponentially weighted moving average (AEWMA) control chart is a smooth combination of the Shewhart and exponentially weighted moving average (EWMA) control charts. This chart was proposed by Cappizzi and Masarotto (2003) to achieve a reasonable performance for both small and large shifts. Cappizzi and Masarotto (2003) used a pair of shifts in designing their control chart. In this study, however, the process mean shift is considered as a random variable with a certain probability distribution and the AEWMA control chart is optimized for a wide range of mean shifts according to that probability distribution and not just for a pair of shifts. Using the Markov chain technique, the results show that the new optimization design can improve the performance of the AEWMA control chart from an overall point of view relative to the various designs presented by Cappizzi and Masarotto (2003). Optimal design parameters that achieve the desired in-control average run length (ARL) are computed in several cases and formulas used to find approximately their values are given. Using these formulas, the practitioner can compute the optimal design parameters corresponding to any desired in-control ARL without the need to apply the optimization procedure. The results obtained by these formulas are very promising and would particularly facilitate the design of the AEWMA control chart for any in-control ARL value.
机译:自适应指数加权移动平均值(AEWMA)控制图是Shewhart和指数加权移动平均值(EWMA)控制图的平滑组合。该图表是由Cappizzi和Masarotto(2003)提出的,目的是为了实现小班和大班的合理表现。 Cappizzi和Masarotto(2003)在设计控制图时采用了两次转换。但是,在这项研究中,过程平均偏移被视为具有一定概率分布的随机变量,并且根据该概率分布,不仅针对一对偏移,还针对广泛的平均偏移对AEWMA控制图进行了优化。使用马尔可夫链技术,结果表明,相对于Cappizzi和Masarotto(2003)提出的各种设计,新的优化设计可以从总体上提高AEWMA控制图的性能。在几种情况下,可以计算出达到期望的控制中平均行程长度(ARL)的最佳设计参数,并给出用于找到其近似值的公式。使用这些公式,从业人员可以计算与任何所需的控制内ARL相对应的最佳设计参数,而无需应用优化程序。通过这些公式获得的结果非常有希望,并且将特别有助于为任何在控制中的ARL值设计AEWMA控制图。

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