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Overall Design Technology of Unmanned Underwater Systems | Publishing Language: Chinese

Event-driven metrology-communication joint framework based on LMPC multi-AUV formation control

College of Intelligent Systems Science and Engineering, Harbin Engineering University, Harbin 150001, China
Nanhai Institute of Harbin Engineering University, Sanya 572024, China
School of Intelligent Perception and Instruments, Zhongyuan University of Technology, Zhengzhou 451191, China
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Abstract

Objective

To address the challenges in multi-AUV formation maneuvering, such as limited state perception and transmission capabilities, acoustic communication delays, data loss, and reduced observability due to the lack of position information exchange, this study proposes an event-triggered metrology−communication unified framework with a Lyapunov-based model predictive formation control method (ETMCU−LMPC). The proposed approach aims to enhance formation stability and tracking accuracy.

Method

First, by integrating the formation communication topology with system states, an event-triggered mechanism based on state observation is established. This mechanism leverages relative measurements among AUVs to mitigate delays and data loss caused by acoustic communication failures, while improving system observability in the absence of position information exchange. Second, a distributed model predictive controller based on Lyapunov theory is designed. The controller employs backstepping to construct contractive constraints, ensuring recursive feasibility, and incorporates adaptive Kalman filtering (AKF) to compensate for measurement noise, thereby guaranteeing closed-loop stability.

Results

Simulation results of the formation control for five AUVs (1 leader and 4 followers) show that, compared with the traditional LMPC, the proposed ETMCU−LMPC method reduces the convergence time from 8 s to 6 s, the maximum error from 1.12 m to 0.36 m, and the steady-state error from 0.57 m to 0.06 m. Additionally, the control input exhibits greater stability.

Conclusion

The proposed method can effectively cope with communication anomalies, improve the reliability of multi-AUV formations under scenarios with limited state perception and transmission, and thus possesses practical engineering significance.

CLC number: U664.82;TP273 Document code: A

References

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Chinese Journal of Ship Research
Pages 89-100

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Cite this article:
XU B, ZUO Y, WANG Z, et al. Event-driven metrology-communication joint framework based on LMPC multi-AUV formation control. Chinese Journal of Ship Research, 2026, 21(2): 89-100. https://doi.org/10.19693/j.issn.1673-3185.04586

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Received: 01 July 2025
Revised: 11 September 2025
Published: 12 November 2025
© 2026 Chinese Journal of Ship Research.