Determination of sample size to support diagnostic inspection of components

Q4 Engineering
Eishiro Higo, M. Pandey
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引用次数: 0

Abstract

A complex engineering system like a nuclear power reactor consists of a large variety and number of engineering components. As a part of a component aging management program, the diagnostic inspections of various component populations are performed to detect the onset of any unanticipated degradation. A prudent selection of the inspection sample size is necessary to optimise inspection cost. Sample size selection is typically based on the traditional statistical hypothesis test, which tends to result in a fairly large sample size. This paper presents an alternate approach to the sample size determination (SSD) problem based on the concept of the value of information (VoI). The paper provides a comparative analysis of the VoI and hypothesis-testing approaches through illustrative examples. The VoI approach is shown to provide a more meaningful way to minimise the cost of inspection as a function of component-replacement cost and losses arising from a failure. The characteristics and advantages of the VoI approach are analysed.
确定样品大小,以支持部件的诊断检查
像核动力反应堆这样的复杂工程系统由种类繁多、数量众多的工程部件组成。作为组件老化管理程序的一部分,对各种组件进行诊断检查,以检测任何意外退化的发生。为了优化检验成本,必须谨慎选择检验样本量。样本量的选择通常基于传统的统计假设检验,这往往会导致相当大的样本量。本文提出了一种基于信息价值(VoI)概念的样本大小确定(SSD)问题的替代方法。本文通过实例对VoI和假设检验方法进行了比较分析。VoI方法提供了一种更有意义的方法,可以最大限度地降低检查成本(作为部件更换成本的函数)和故障造成的损失。分析了VoI方法的特点和优点。
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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来源期刊
International Journal of Quality Engineering and Technology
International Journal of Quality Engineering and Technology Engineering-Safety, Risk, Reliability and Quality
CiteScore
0.40
自引率
0.00%
发文量
1
期刊介绍: IJQET fosters the exchange and dissemination of research publications aimed at the latest developments in all areas of quality engineering. The thrust of this international journal is to publish original full-length articles on experimental and theoretical basic research with scholarly rigour. IJQET particularly welcomes those emerging methodologies and techniques in concise and quantitative expressions of the theoretical and practical engineering and science disciplines.
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