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Detection and detectability of intermittent faults based on moving average T-2 control charts with multiple window lengths

机译:基于多个窗口长度的移动平均T-2控制图的间歇故障的检测和可检测性

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So far, problems of intermittent fault (IF) detection and detectability have not been fully investigated in the multivariate statistics framework. The characteristics of IFs are small magnitudes and short durations, and consequently traditional multivariate statistical methods using only a single observation are no longer effective. Thus in this paper, moving average T-2 control charts (MA-TCCs) with multiple window lengths, which simultaneously employ a bank of MA-TCCs with different window lengths, are proposed to address the IF detection problem. Methods to reduce false/missing alarms and infer the IFs' appearing and disappearing time instances are presented. In order to analyze the detection capability for IFs, definitions of guaranteed detectability are introduced, which is an extension and generalization of the original fault detectability concept focused on permanent faults (PFs). Then, necessary and sufficient conditions are derived for the detectability of IFs, which may appear and disappear several times with different magnitudes and durations. Based on these conditions, some optimal properties of two important window lengths are further discussed. In this way, a theoretical framework for the analysis of IFs' detectability is established as well as extended discussions on how the theoretical results can be adapted to real-world applications. Finally, simulation studies on a numerical example and the continuous stirred tank reactor (CSTR) process are carried out to show the effectiveness of the developed methods. (C) 2020 Elsevier Ltd. All rights reserved.
机译:到目前为止,在多元统计框架中,尚未完全研究间歇性故障(IF)检测和可检测性的问题。 IFS的特性是小的大小和短持续时间,因此只使用单个观察的传统多元统计方法不再有效。因此,在本文中,提出了使用多个窗口长度的平均T-2控制图(MA-TCC),其同时使用具有不同窗口长度的MA-TCC群,以解决IF检测问题。呈现了减少假/缺失警报和推断出现的IFS出现和消失时间实例的方法。为了分析IFS的检测能力,介绍了保证可检测性的定义,这是原始故障检测性概念的扩展和泛化,其专注于永久性故障(PFS)。然后,导出必要和充分的条件,用于IFS的可检测性,这可能出现和消失多次,以不同的大小和持续时间消失。基于这些条件,进一步讨论了两个重要窗口长度的一些最佳特性。通过这种方式,建立了分析IFS检测性的理论框架以及对理论结果如何适应现实世界应用的延长讨论。最后,进行了对数值例子和连续搅拌釜反应器(CSTR)工艺的模拟研究以显示出开发方法的有效性。 (c)2020 elestvier有限公司保留所有权利。

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