An Event-Triggered Decentralized Asynchronous Design Scheme for Positive Interconnected Switched Systems With MDMDT Switching
Zilan Chen, Shuo Li, Choon Ki Ahn, Zhengrong Xiang
Hangzhou Dianzi University Korea University Nanjing University of Science and Technology
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摘要与影响
The article focuses on the design of event-triggered decentralized asynchronous (ETDA) control for positive interconnected switched systems (PISSs) subject to a mode-dependent minimum dwell-time (MDMDT) constraint. First, a novel 1-norm-based event-triggered mechanism (ETM) and a decentralized asynchronous control strategy (DACS) are proposed to facilitate the design of an ETDA control framework. Next, a sufficient positivity criterion is presented for PISSs in a closed-loop. Then, by constructing a newfangled discretized linear copositive Lyapunov function (DLCLF) for MDMDT switching, and utilizing the matrix decomposition approach for ETDA controller gains, a feasible mode-dependent ETDA control scheme with a tractable linear programming (LP) approach is presented for PISSs. Further, the provided ETDA control scheme can degenerate into three exceptional cases: event-triggered decentralized synchronous (ETDS) control, time-triggered decentralized asynchronous (TTDA) control, and time-triggered decentralized synchronous (TTDS) control. Finally, comparisons are conducted to exemplify the significance and feasibility of the designed control scheme.
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工程Stability and Control of Uncertain Systems
Neural Networks Stability and Synchronization · Control and Stability of Dynamical Systems
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