DOI: 10.1177/09596518261474556 ISSN: 0959-6518
Sliding mode synchronization of coupled hyperbolic–parabolic PDE systems subject to impulsive disturbances
Qiang Guo, Shengguo Wang, Jiayao Dong, Xudong Chen, Xinzhe Li, Li Li, Hongguang Pan
At present, research efforts primarily concentrate on the dynamical behavior of dual-coupled hyperbolic–parabolic partial differential systems (HPPDS). In practical engineering applications, it is often the case that
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HPPDS are coupled with each other. In this paper, the
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coupled HPPDS with the impulsive disturbances is constructed and its synchronization problem is studied. Firstly, the definition of the
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coupled HPPDS with impulsive disturbances is given. In the second stage, a synchronization scheme for the target system is developed using Lyapunov-based analysis and sliding mode control techniques. The construction of a sliding mode surface is followed by a proof of its reachability. Utilizing this surface, an appropriate sliding mode controller is designed to guarantee system stability, which leads to the synchronization of
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coupled HPPDS. The validity and performance of the proposed approach are further demonstrated through simulation results.