A Novel Obstacle Avoidance Consensus Control for Multi-AUV Formation System

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Abstract

In this paper, the fixed-time event-triggered obstacle avoidance consensus control for a multi-AUV time-varying formation system in a 3D environment is presented by using an improved artificial potential field and leader-follower strategy (IAPF-LF). Firstly, the proposed fixed-time control can achieve the desired multi-AUV formation within a fixed settling time in any initial system state. Secondly, an event-triggered communication strategy is developed to govern the communication among AUVs, and the communication energy consumption can be decremented. The time-varying formation obstacle avoidance control algorithm based on IAPF-LF is designed to avoid static and dynamic obstacles, the desired formation is maintained in the presence of external disturbances, and there is no Zeno behavior under the fixed-time event-triggered consensus control strategy. The stability of the system is proved by the Lyapunov function and inequality scaling. Finally, simulation examples and water pool experiments are reported to verify the performance of the proposed theoretical algorithms.

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Wang, L., Zhu, D., Pang, W., & Luo, C. (2023). A Novel Obstacle Avoidance Consensus Control for Multi-AUV Formation System. IEEE/CAA Journal of Automatica Sinica, 10(5), 1304–1318. https://doi.org/10.1109/JAS.2023.123201

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