Affiliation:
1. College of Electrical Engineering and Automation Shandong University of Science and Technology Qingdao China
2. College of Mathematics and Systems Science Shandong University of Science and Technology Qingdao China
3. School of Mathematical Science Liaocheng University Liaocheng China
Abstract
AbstractIn this article, the exponential stabilization of an asynchronously switched linear system with constant time‐delay is studied by using continuous event‐triggered control. Aiming at reducing the communication and guaranteeing a satisfactory system performance, an observer‐based event‐triggered scheme is proposed with the introduction of an upper bound for the trigger interval. The cases of no trigger and multiple triggers within an interval of system switching are considered, respectively. Taking the system switching interval as a reference interval, the above two cases are modeled to establish a unified augmented closed‐loop system. A set of multiple Lyapunov‐Krasovskii functionals (LKFs) is constructed, the exponential stabilization of the switched system is studied based on the average dwell time (ADT) method and the constructed LKFs. Meanwhile, a LMI‐based design algorithm for the observer gain and the controller gain is given, respectively. In addition, the minimum lower bound of the trigger interval is determined to exclude the Zeno behavior. Two simulation examples are provided to demonstrate the effectiveness of the proposed results.
Funder
National Natural Science Foundation of China
Natural Science Foundation of Shandong Province
Subject
Electrical and Electronic Engineering,Industrial and Manufacturing Engineering,Mechanical Engineering,Aerospace Engineering,Biomedical Engineering,General Chemical Engineering,Control and Systems Engineering
Cited by
3 articles.
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