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Gap metric techniques and their application to fault detection performance analysis and fault isolation schemes

机译:间隙度量技术及其在故障检测性能分析和故障隔离方案中的应用

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The main objective of this paper is to initiate a systematic application of gap metric techniques to the performance analysis and design issues of detecting and isolating multiplicative faults in uncertain systems. To be specific, in the first part of this paper, the K-gap and L-2-gap metrics are introduced, which measure the distance between two kernel subspaces and serve as an efficient tool to deal with fault detection and isolation issues. Based on it, the K-gap and L(2-)gap aided analysis of residual dynamics with respect to model uncertainties is presented for the open-loop and feedback control systems, respectively. Furthermore, they are applied to deal with the performance analysis of fault detection systems. For this purpose, the concepts of fault detectability indicators and fault-to-uncertainty ratio are introduced. The second part of this paper is dedicated to the isolation of multiplicative faults. To this end, the definition for fault isolability is studied first with the aid of K-gap metric. The further efforts are devoted to the application of K-gap metric to two online fault isolation algorithms. The first one is an observer-based scheme, which adopts a bank of residual generators and an observer-based decision unit. The second scheme is based on the data-driven identification of the kernel representation of the faulty plant and the data-driven computation of the K-gap metric. Case and example studies are finally given to illustrate the proposed approaches. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本文的主要目的是启动间隙度量技术的系统应用于检测和隔离不确定系统中乘法故障的性能分析和设计问题。具体而言,在本文的第一部分中,介绍了K-GAP和L-2间隙度量,其测量了两个内核子空间之间的距离,并用作处理故障检测和隔离问题的有效工具。基于它,对于开环和反馈控制系统,呈现了对模型不确定性的k-gap和l(2-)间隙辅助分析,用于开环和反馈控制系统。此外,它们适用于处理故障检测系统的性能分析。为此,介绍了故障检测性指示符和故障到不确定性比率的概念。本文的第二部分致力于隔离乘法断层。为此,首先通过K-GAP度量来研究故障隔离性的定义。进一步的努力致力于将K-GAP度量应用于两个在线故障隔离算法。第一个是基于观察者的方案,其采用一组剩余发电机和基于观察者的决策单元。第二方案基于故障工厂的核表示的数据驱动识别和K-GAP度量的数据驱动计算。案例和示例性研究最终阐述了提出的方法。 (c)2020 elestvier有限公司保留所有权利。

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