Mu, Xiaowu; Li, Xin; Fang, Jianyin; Wu, Xihui Reliable observer-based finite-time \(H_\infty\) control for networked nonlinear semi-Markovian jump systems with actuator fault and parameter uncertainties via dynamic event-triggered scheme. (English) Zbl 1478.93413 Inf. Sci. 546, 573-595 (2021). Summary: This paper tackles the observer-based finite-time \(H_\infty\) control problem for networked nonlinear semi-Markovian jump systems (SMJSs) with actuator fault, parameter uncertainties and partly unknown transition rates via an improved dynamic event-triggered scheme (DETS). In comparison with traditional dynamic event-triggered scheme, the observer-based improved dynamic event-triggered scheme which is not restricted by real system states and could save more network resources is firstly proposed in this paper. Then, a more general actuator fault model is considered and the reliable observer-based state feedback controller is designed. Sufficient conditions are proposed to guarantee the closed-loop system is stochastically finite-time bounded with a prescribed \(H_\infty\) disturbance attenuation level. Lastly, two simulation examples are given to affirm the validity of the results obtained in this paper. Cited in 15 Documents MSC: 93C65 Discrete event control/observation systems 93B36 \(H^\infty\)-control 93D40 Finite-time stability 93B53 Observers 93B70 Networked control 93E03 Stochastic systems in control theory (general) Keywords:networked control systems; semi-Markovian jump; event-triggered scheme; \(H_\infty\) control; finite stability PDFBibTeX XMLCite \textit{X. Mu} et al., Inf. Sci. 546, 573--595 (2021; Zbl 1478.93413) Full Text: DOI References: [1] Meng, C.; Wang, T. M.; Chou, W. S.; Luan, S.; Zhang, Y. R.; Tian, Z. 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