Event-Triggered Safe Stabilizing Boundary Control for the Stefan PDE System with Actuator Dynamics

2023 AMERICAN CONTROL CONFERENCE, ACC(2023)

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摘要
This paper proposes an event-triggered boundary control for the safe stabilization of the Stefan PDE system with actuator dynamics. The control law is designed by applying Zero-Order Hold (ZOH) to the continuous-time safe stabilizing controller developed in our previous work. The event-triggering mechanism is then derived so that the imposed safety conditions associated with high order Control Barrier Function (CBF) are maintained and the stability of the closed-loop system is ensured. We prove that under the proposed event-triggering mechanism, the so-called "Zeno" behavior is always avoided, by showing the existence of the minimum dwell-time between two triggering times. The stability of the closed-loop system is proven by employing PDE backstepping method and Lyapunov analysis. The efficacy of the proposed method is demonstrated in numerical simulation.
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关键词
actuator dynamics,closed-loop system,continuous-time safe stabilizing controller,control law,event-triggered boundary control,event-triggered safe stabilizing boundary Control,event-triggering mechanism,high order Control Barrier Function,PDE backstepping method,safe stabilization,Stefan PDE system,triggering times
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