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Journal of Zhejiang University SCIENCE C 1998 Vol.-1 No.-1 P.

http://doi.org/10.1631/FITEE.2400427


Event-triggered finite-time guaranteed cost control of a synchronous switched systems under the round-robin protocol via AED-ADT method


Author(s):  Hangli REN, Qingxi FAN, Linlin HOU

Affiliation(s):  School of Electric Information Engineering, Zhengzhou University of Light Industry, Zhengzhou 450000, China; more

Corresponding email(s):   renhangli2013@163.com

Key Words:  Switched systems, Event-triggered scheme, Round-robin protocol, Asynchronous switching, Admissible edge-dependent average dwell time, Guaranteed cost control


Hangli REN, Qingxi FAN, Linlin HOU. Event-triggered finite-time guaranteed cost control of a synchronous switched systems under the round-robin protocol via AED-ADT method[J]. Frontiers of Information Technology & Electronic Engineering, 1998, -1(-1): .

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Abstract: 
This paper focuses on addressing the problems of finite-time boundedness and guaranteed cost control in switched systems under asynchronous switching. To reduce redundant information transmission and alleviate data congestion of sensor nodes, two schemes are proposed: the event-triggered scheme (ETS) and the round-robin protocol (RRP). These schemes are designed to ensure that the system exhibits good dynamic characteristics while reducing communication resources. In the field of finite-time control, a switching signal is designed using the admissible edge-dependent average dwell time (AED-ADT) method. This method involves a slow AED-ADT switching and a fast AED-ADT switching, which are respectively suitable for finite-time stable and finite-time unstable situations of the controlled system within the asynchronous switching interval. By constructing a double-mode dependent Lyapunov function, the finite-time bounded criterion and the controller gain of the switched systems are obtained. Finally, the validity of the proposed results is showcased by implementing a buck-boost voltage circuit model.

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