离散线性系统的双通道事件触发模型预测控制

Xiaoda Hu, Fei Hao
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引用次数: 0

摘要

研究了存在有界扰动的约束离散线性系统的事件触发模型预测控制问题。为了减少通信和计算量,在传感器节点和控制节点上分别构建了两种不同的事件触发策略。引入第一事件触发器,以调度信号从传感器节点向本地控制节点的传输;第二事件触发器用于确定在基于mpc的控制节点中解决最优控制问题的时刻。通过构造可行控制序列,得到了保证闭环系统可行和稳定的充分条件。最后,通过仿真实例验证了所提策略的可行性和有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Two-channel event-triggered model predictive control for discrete linear systems
This paper studies an event-triggered model predictive control problem for constrained discrete-time linear systems in the presence of bounded disturbances. For reducing the communication and computational loads, two different event-triggered strategies are constructed in the sensor and the controller nodes, respectively. The first event trigger is introduced to schedule the transmission of signals from the sensor node to the local controller node; and the second event trigger is employed to determine the instant when the optimal control problem in the MPC-based controller node should be solved. By constructing a feasible control sequence, the sufficient conditions are derived for guaranteeing the feasibility and stability of the closed-loop systems. Finally, a simulation example is provided to illustrate the feasibility and the effectiveness of the proposed strategy.
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