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Detection and diagnosis of incipient faults in sensors of an LTI system using a modified GLR-based approach

机译:使用改进的基于GLR的方法检测和诊断LTI系统传感器中的早期故障

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This study aims to provide a solution for detection and diagnosis of drift type faults in linear time invariant systems using the generalized likelihood ratio (GLR) test. The main goal of this study is to deal with more realistic ramp type faults instead of abrupt jumps. In this regard, several ramp type fault scenarios are considered: pure ramps, truncated ramps and steptype faults which behave as ramp faults during inter-sample intervals. In addition, a modified GLR-based approach that is capable of accurately detecting the time of occurrence of the fault is used in this study. The proposed method uses statistical fault detection and confirmation tests to obtain a crude estimate of time of occurrence of the fault (TOF) and then refines the estimated TOF using an extended data window and the GLR test. The closed form solutions for all possible scenarios are provided. The proposed method is evaluated by application to an LTI system using Monte Carlo simulations and the results reveal the efficacy of this method in dealing with drift type faults. (C) 2015 Elsevier Ltd. All rights reserved.
机译:这项研究旨在提供一种使用广义似然比(GLR)检验来检测和诊断线性时不变系统中的漂移型故障的解决方案。这项研究的主要目标是处理更实际的斜坡类型的故障,而不是突然的跳跃。在这方面,考虑了几种斜坡类型的故障情况:纯斜坡,截断斜坡和在样本间间隔期间充当斜坡故障的阶梯型故障。另外,在这项研究中使用了一种改进的基于GLR的方法,该方法能够准确检测故障的发生时间。所提出的方法使用统计故障检测和确认测试来获得故障发生时间(TOF)的粗略估计,然后使用扩展的数据窗口和GLR测试对估计的TOF进行细化。提供了适用于所有可能情况的封闭式解决方案。通过使用蒙特卡洛模拟将其应用于LTI系统,对所提出的方法进行了评估,结果表明该方法在处理漂移型故障方面的有效性。 (C)2015 Elsevier Ltd.保留所有权利。

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