Optimal thresholding for robust fault detection of uncertain systems

Citation
F. Rambeaux et al., Optimal thresholding for robust fault detection of uncertain systems, INT J ROBUS, 10(14), 2000, pp. 1155-1173
Citations number
17
Categorie Soggetti
AI Robotics and Automatic Control
Journal title
INTERNATIONAL JOURNAL OF ROBUST AND NONLINEAR CONTROL
ISSN journal
10498923 → ACNP
Volume
10
Issue
14
Year of publication
2000
Pages
1155 - 1173
Database
ISI
SICI code
1049-8923(200012)10:14<1155:OTFRFD>2.0.ZU;2-C
Abstract
An important issue in fault diagnosis research is the design of methods for robust residual generation. In this framework, systems described by uncert ain models and subject to unknown input disturbances are studied in this ar ticle. A nominal model of the system is first considered for residual gener ation using an H-infinity parameterized output observer. The design procedu re is based on the optimization of a performance index which is solved via linear matrix inequalities (LMI). Unstructured uncertainties due to paramet er variations are then considered in the system model. In order to take the worst effect of uncertainties into account, the determination of an optima l threshold depending on the operating conditions is suggested for residual evaluation This is achieved via the introduction of Kharitonov polynomials and the associated geometry of uncertain polytopic families. A simulation example illustrates the proposed approach. Copyright (C) 2000 John Wiley & Sons, Ltd.