Event-Triggered Sliding-Mode Control for Switched Systems With Reachability-Guaranteed
成果类型:
Article
署名作者:
Wang, Yuzhong; Wen, Changyun; Li, Xiaolei; Sang, Hong
署名单位:
University of Hong Kong; Nanyang Technological University; Yanshan University; Dalian Maritime University
刊物名称:
IEEE TRANSACTIONS ON AUTOMATIC CONTROL
ISSN/ISSBN:
0018-9286
DOI:
10.1109/TAC.2026.3676318
发表日期:
2026
关键词:
Hybrid systems
摘要:
In existingevent-triggered sliding-mode control (ETSMC) for switched systems, triggering or switching behavior usually causes the system states to deviate from the sliding surface, which may affect both stability and robustness of the system. To deal with this issue, this article proposes a reachability-guaranteed ETSMC for switched systems without/with communication delay. First, an event-triggered scheme (ETS) is constructed with two error functions integrated to counteract the effects of the triggering and guides the state trajectories onto the sliding surface within finite time. Then, by using time-varying Lyapunov function technology, asymptotic stability of the sliding-mode dynamic is established, even in the scenario where all switched modes are unstabilizable. This ensures both reachability and asymptotic stability of the switched system be achieved simultaneously. In addition, Zeno behavior is excluded. Then, to deal with the network-induced communication delay and ensure a positive lower bound on the interevent intervals, the proposed scheme is extended to a periodic event-triggered scenario. Reachability and asymptotic stability can still be guaranteed by using a positive convergent sequence in ETS. Finally, simulation results are presented to verify the effectiveness of the proposed methods.