Measurement Error Effect on the Power of Control Chart for the Ratio of Two Poisson Distributions

A. Chakraborty, A. Khurshid
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引用次数: 10

Abstract

Abstract It is widely recognized that measurement errors often exist in practice and may considerably affect the performance of control charts in some cases. Measurement error variability has uncertainty which may be originated from several sources. Recently, Chakraborty and Khurshid [3] studied the effects of measurement error on control charts for zero-truncated Poisson distribution. In this paper, we study the effect of the two sources of variability on the power characteristics of control charts and obtain the values of average run length (ARL) for the binomial distribution based on the ratio of two Poisson distributions as studied by Sahai and Khurshid [20]. Expression of the power of the control chart under the standardized normal variable for the binomial distribution is also derived when the underlying distribution is the ratio of two Poisson distributions.
测量误差对两泊松分布之比控制图功率的影响
摘要在实际应用中,测量误差经常存在,并且在某些情况下会严重影响控制图的性能。测量误差变异性具有不确定度,不确定度可能来自几个来源。Chakraborty和Khurshid[3]研究了测量误差对零截断泊松分布控制图的影响。本文研究了两种可变性源对控制图功率特性的影响,并根据Sahai和Khurshid[20]研究的两个泊松分布的比值,得到了二项分布的平均运行长度(ARL)值。当底层分布为两个泊松分布之比时,还推导了二项分布的标准化正态变量下控制图幂的表达式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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