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首页> 外文期刊>Journal of the royal statistical society >Domain-selective functional analysis of variance for supervised statistical profile monitoring of signal data
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Domain-selective functional analysis of variance for supervised statistical profile monitoring of signal data

机译:对信号数据进行监督统计资料监视的方差的域选择性功能分析

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摘要

In many applications, process monitoring has to deal with functional responses, which are also known as profile data. In these scenarios, a relevant industrial problem consists of detecting faults by combining supervised learning with functional data analysis and statistical process monitoring. Supervised learning is usually applied to the whole signal domain, with the aim of discovering the features that are affected by the faults of interest. We explore a different perspective, which consists of performing supervised learning to select inferentially the parts of the signal data that are more informative in terms of underlying fault factors. The procedure is based on a non-parametric domain-selective functional analysis of variance and allows us to identify the specific subintervals where the profile is sensitive to process changes. Benefits achieved by coupling the proposed approach with profile monitoring are highlighted by using a simulation study. We show how applying profile monitoring only to the identified subintervals can reduce the time to detect the out-of-control state of the process. To illustrate its potential in industrial applications, the procedure is applied to remote laser welding, where the main aim is monitoring the gap between the welded plates through the observation of the emission spectra of the welded material.
机译:在许多应用程序中,过程监视必须处理功能响应,这也称为概要文件数据。在这些情况下,相关的工业问题包括通过将监督学习与功能数据分析和统计过程监视相结合来检测故障。监督学习通常应用于整个信号域,目的是发现受关注故障影响的特征。我们探索了一个不同的观点,该观点包括执行监督学习,以推断性地选择信号数据中有关潜在故障因素更具信息性的部分。该程序基于方差的非参数域选择性功能分析,使我们能够识别配置文件对过程更改敏感的特定子间隔。通过模拟研究突出显示了将建议的方法与配置文件监视耦合所获得的好处。我们展示了如何仅将概要文件监视应用于已识别的子间隔,可以如何减少检测过程的失控状态的时间。为了说明其在工业应用中的潜力,该程序应用于远程激光焊接,其主要目的是通过观察焊接材料的发射光谱来监控焊接板之间的间隙。

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