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Dynamic Event-Triggered Fixed-Time Consensus Control and Its Applications to Magnetic Map Construction

Jiayu Chai, Qiang Lu, Xudong Tao, Dong‐Liang Peng, Botao Zhang

Year
2023
Citations
17

Abstract

This article deals with the consensus problem of multi-agent systems by developing a fixed-time consensus control approach with a dynamic event-triggered rule. First, a new fixedtime stability condition is obtained where the less conservative settling time is given such that the theoretical settling time can well reflect the real consensus time. Second, a dynamic event-triggered rule is designed to decrease the use of chip and network resources where Zeno behaviors can be avoided after consensus is achieved, especially for finite/fixed-time consensus control approaches. Third, in terms of the developed dynamic event-triggered rule, a fixed-time consensus control approach by introducing a new item is proposed to coordinate the multi-agent system to reach consensus. The corresponding stability of the multi-agent system with the proposed control approach and dynamic event triggered rule is analyzed based on Lyapunov theory and the fixed-time stability theorem. At last, the effectiveness of the dynamic event-triggered fixed-time consensus control approach is verified by simulations and experiments for the problem of magnetic map construction based on multiple mobile robots.

Keywords

Settling timeLyapunov stabilityConsensusControl theory (sociology)Multi-agent systemComputer scienceEvent (particle physics)Stability (learning theory)Control (management)Control engineering

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