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Fuzzy development of Mean and Range control charts using statistical properties of different representative values

机译:使用不同代表值的统计特性模糊开发均值和范围控制图

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This paper develops Mean and Range control charts in fuzzy environment using different transformation methods. It is assumed that the observations of each sample are fuzzy random variables, which have triangular membership functions. After calculating fuzzy mean and fuzzy range of each sample using fuzzy arithmetic, their representative values are calculated exploiting the transformation methods. Then, using statistical properties of the obtained representative values and basic structure of Shewhart control charts, new Mean and Range control charts are constructed to monitor the process mean and variation. After that, the power of control charts constructed based on different transformation methods are examined applying average run length (ARL) criterion. According to this criterion, it is concluded that, contrary to the previous claim, these different transformation methods lead to mean and rang control charts with various performances. Moreover, it is represented that the value of α - level has significant influence on the performance of obtained control charts. Finally, it is derived that incorporating fuzziness into observations results in less powerful control charts.
机译:本文使用不同的变换方法来开发模糊环境中的均值和范围控制图。假设每个样本的观测值都是模糊随机变量,具有三角隶属函数。在使用模糊算法计算出每个样本的模糊均值和模糊范围之后,利用变换方法计算它们的代表值。然后,使用获得的代表值的统计特性和Shewhart控制图的基本结构,构造新的均值和范围控制图以监视过程均值和变化。之后,使用平均行程长度(ARL)准则检查基于不同转换方法构造的控制图的功能。根据此标准,可以得出结论,与先前的权利要求相反,这些不同的转换方法导致具有各种性能的均值和范围控制图。此外,它表示α-等级的值对获得的控制图的性能有重大影响。最后,得出的结论是,将模糊性纳入观察结果会导致控制图的功能降低。

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