학술논문

Fault Detection Filtering for a Class of Nonhomogeneous Markov Jump Systems with Random Sensor Saturations
Document Type
Article
Source
International Journal of Control, Automation, and Systems, 18(2), 1, pp.439-449 Feb, 2020
Subject
제어계측공학
Language
English
ISSN
2005-4092
1598-6446
Abstract
This paper is concerned with the problem of fault detection filtering for a class of nonhomogeneous Markov jump systems with randomly occurring sensor saturations, where it is assumed that sensor saturation is randomly occur satisfying the Bernoulli distribution, meanwhile transition probabilities in nonhomogeneous Markov chain are time-varying. By employing the suitable Lyapunov technique in combination with Linear Matrix Inequalities (LMIs), some sufficient criteria are derived to guarantee that the augmented system is mean square stochastically stable with an H∞ performance level. Finally, a representative example of industrial stirred tank reactor systems is presented to illustrate the theoretical results, and it then turns out that the feasible filtering parameters can be exactly fixed by Matlab Tool Box, and the H∞ performance of the system can be fully guaranteed by the proposed control strategy.