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Using p values to design statistical process control charts

机译:使用p值设计统计过程控制图

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Conventional Phase II statistical process control (SPC) charts are designed using control limits; a chart gives a signal of process distributional shift when its charting statistic exceeds a properly chosen control limit. To do so, we only know whether a chart is out-of-control at a given time. It is therefore not informative enough about the likelihood of a potential distributional shift. In this paper, we suggest designing the SPC charts using p values. By this approach, at each time point of Phase II process monitoring, the p value of the observed charting statistic is computed, under the assumption that the process is in-control. If the p value is less than a pre-specified significance level, then a signal of distributional shift is delivered. This p value approach has several benefits, compared to the conventional design using control limits. First, after a signal of distributional shift is delivered, we could know how strong the signal is. Second, even when the p value at a given time point is larger than the significance level, it still provides us useful information about how stable the process performs at that time point. The second benefit is especially useful when we adopt a variable sampling scheme, by which the sampling time can be longer when we have more evidence that the process runs stably, supported by a larger p value. To demonstrate the p value approach, we consider univariate process monitoring by cumulative sum control charts in various cases.
机译:常规的II期统计过程控制(SPC)图是使用控制限制来设计的。当图表的图表统计量超过适当选择的控制极限时,图表将发出过程分布偏移的信号。为此,我们只知道图表在给定时间是否失控。因此,关于潜在的分布偏移的可能性的信息不足。在本文中,我们建议使用p值设计SPC图表。通过这种方法,在过程处于受控状态的假设下,在阶段II过程监视的每个时间点,都会计算观察到的制图统计量的p值。如果p值小于预先指定的显着性水平,则传递分布偏移信号。与使用控制限制的常规设计相比,此p值方法具有多个优点。首先,在传递了分布偏移信号之后,我们可以知道该信号的强度。其次,即使在给定时间点的p值大于显着性水平,它仍可为我们提供有关该过程在该时间点执行的稳定性的有用信息。当我们采用可变采样方案时,第二个好处尤其有用,当我们有更多证据表明该过程稳定运行且有较大的p值时,采样时间会更长。为了演示p值方法,我们考虑在各种情况下通过累积和控制图进行单变量过程监控。

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