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

Multi-feature fusion-based terminal visual autonomous docking technology for AUV

Pan XIONGXiangdong QI( )Yanlin SUNZhengyang ZHAOJuhao QIN
State Key Laboratory of Extreme Environment Optoelectronic Dynamic Measurement Technology and Instrument, North University of China, Taiyuan 030051, China
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Abstract

Objective

To address the low docking accuracy of autonomous underwater vehicles (AUVs) in complex underwater environments, a multi-feature fusion vision-based method is proposed.

Method

A self-developed rudderless vector propulsion AUV with four thrusters was used, and the dark channel prior (DCP) dehazing algorithm was adopted for image enhancement. An improved Canny edge detection algorithm was combined with color threshold segmentation to achieve multi-feature fusion. The minimum enclosing circle method was utilized for circle center positioning, and coordinate transformation was performed to calculate the relative position and orientation for docking.

Results

Unity 3D simulations and pool experiments revealed a distance-dependent trend: both mean difference and root mean square error decreased as docking distance decreased. Closer distances yielded higher visual ranging accuracy and docking precision. When the docking distance was less than 2 m, the positioning error was maintained below 5 cm, with an overall success rate of 88%.

Conclusion

The proposed method fulfills the accuracy requirements for AUV autonomous docking and provides a highly robust solution for underwater equipment recovery.

CLC number: U674.941 Document code: A

References

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Chinese Journal of Ship Research
Pages 112-124

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Cite this article:
XIONG P, QI X, SUN Y, et al. Multi-feature fusion-based terminal visual autonomous docking technology for AUV. Chinese Journal of Ship Research, 2026, 21(2): 112-124. https://doi.org/10.19693/j.issn.1673-3185.04381

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Received: 22 February 2025
Revised: 18 May 2025
Published: 29 July 2025
© 2026 Chinese Journal of Ship Research.