A Distributed Adaptive Mixed Self-/Event-triggered Formation Control Approach for Multiple Stratospheric Airships with Relative State Constraints and Input Delay

被引:0
|
作者
Yifei Zhang
Ming Zhu
Tian Chen
Zewei Zheng
机构
[1] Beihang University,School of Aeronautic Science and Engineering
[2] Beihang University,Institute of Unmanned System
[3] Beihang University,School of Electronic and Information Engineering
[4] Beihang University,The Seventh Research Division, School of Automation Science and Electrical Engineering
来源
International Journal of Control, Automation and Systems | 2023年 / 21卷
关键词
Formation control; input delay; mixed self-/event-triggered control; relative state constraints;
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学科分类号
摘要
This paper investigates the distributed formation control problem of multiple stratospheric airships in three-dimensional space with several practical problems, such as relative state constraints, input delay, input saturation and disturbances. An adaptive mixed self-/event-triggered formation control scheme is proposed by combining backstepping control, an adaptation technique and a mixed self-/event-triggered control mechanism. First, a novel relative-error-constraint virtual control law is designed based on the barrier Lyapunov function, which is processed into the desired velocity and angular velocity as the input of the next-step designed controller. Then, an adaptive controller is designed based on a designed adaptive law that is utilized to eliminate the influence of external disturbances, input saturation and input delay. In addition, a mixed self-/event-triggered mechanism is designed in the whole system, involving a self-triggered mechanism in the virtual control law and an event-triggered mechanism in the adaptive controller. All signals in the closed-loop system are proven to be semiglobal, uniform and ultimately bounded, and Zeno behavior is proven to be excluded. Finally, the effectiveness of the proposed method is verified through simulations.
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页码:71 / 83
页数:12
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