Jordan Canonical Form for Solving the Fault Diagnosis and Estimation Problems

Author:

Sergiyenko Oleg1ORCID,Zhirabok Alexey23ORCID,Mercorelli Paolo4ORCID,Zuev Alexander3,Filaretov Vladimir5,Tyrsa Vera6

Affiliation:

1. Engineering Institute, Universidad Autonoma de Baja California, Mexicali 21100, Mexico

2. Department of Automation and Robotics, Far Eastern Federal University, 690922 Vladivostok, Russia

3. Institute of Marine Technology Problems, 690990 Vladivostok, Russia

4. Institute for Production Technology and Systems (IPTS), Leuphana University of Lueneburg, 21335 Lueneburg, Germany

5. Institute of Automation and Control Processes, 690041 Vladivostok, Russia

6. Engineering Faculty, Universidad Autonoma de Baja California, Mexicali 21100, Mexico

Abstract

The suggested methods for solving fault diagnosis and estimation problems are based on the use of the Jordan canonical form. The diagnostic observer, virtual sensor, interval, and sliding mode observer design problems are considered. Algorithms have been developed to solve these problems for both linear and nonlinear systems, considering the presence of external disturbances and measurement noise. It has been shown that the Jordan canonical form allows reducing the dimensions of interval observers and virtual sensors, thus simplifying the design process in comparison to the identification canonical form. The theoretical results are illustrated through examples.

Publisher

MDPI AG

Subject

General Medicine

Reference37 articles.

1. Blanke, M., Kinnaert, M., Lunze, J., and Staroswiecki, M. (2016). Diagnosis and Fault-Tolerant Control, Springer.

2. Design of interval state observers for uncertain dynamical systems;Efimov;Autom. Remote Control,2016

3. Kwakernaak, H., and Sivan, R. (1972). Linear Optimal Control Systems, Wiley-Interscience.

4. Nonlinear observers—A state of the art survey;Misawa;J. Dyn. Syst. Meas. Control,1989

5. Diagnosis of linear dynamic systems by the nonparametric method;Zhirabok;Autom. Remote Control,2017

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