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Asynchronous Event-Triggered Distributed Predictive Control for Multiagent Systems With Parameterized Synchronization Constraints

delete2024-01-01
delete10
PRE
AI
D
Dongdong Qin
Z
Zhehao Jin
A
Andong Liu *
W
Wen‐An Zhang
L
Li Yu
DOI:10.1109/TAC.2023.3263757delete
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Abstract

Abstract

En 中文
In this article, we propose an asynchronous event-triggered distributed predictive control method for the cooperation of multiagent systems with parameterized synchronization constraints. A novel event-triggering condition related to the parameterized information received from neighboring agents is derived for each agent based on the input-to-state stability (ISS) condition. In such a framework, the distributed optimization problem is solved and the parameterized information is exchanged between neighboring agents, only when the triggering condition is satisfied. In addition, the dual mode control is adopted in this work and no information will be exchanged between the agent and its neighbors when the agent enters the invariant set, reducing the computation and communication load. Moreover, the recursive feasibility of the proposed algorithm is proved, and a sufficient condition is developed to ensure the stability of the closed-loop system. Finally, numerical simulation is given to verify the effectiveness of the proposed method.
Keywords:
Distributed model predictive control (MPC)
event-triggered control
multiagent systems
parameterized synchronization constraints

Journal

IEEE Transactions on Automatic Control cover
IEEE Transactions on Automatic Control
IF:
7
Papers:
1.3W
Citations:
6.7W

Organization

Z
zhejiang university of technology
Scholars:
3.2W
Papers: 2.0W
Citations: 22