Journal Article
Unmanned Surface Vessel–Unmanned Aerial Vehicle Cooperative Path Following Based on a Predictive Line of Sight Guidance Law
Hugan Zhang; Jiaming Fan; Xianku Zhang; Haitong Xu; C. Guedes Soares
Journal of Marine Science and Engineering · Vol. 12, Issue 10 · pp. 1818 · 2024
Abstract
This paper explores the cooperative control of unmanned surface vessels (USVs) and unmanned aerial vehicles (UAVs) in maritime rescue and coastal surveillance. The USV-UAV system faces challenges of disturbances and substantial inertia-induced overshooting during path following. A novel position prediction line of sight (LOS) guidance law is proposed to address these issues for USV path following control. Radial basis function-based neural networks (RBF-NNs) are used to estimate disturbances, and a high-order differentiator is used to design a velocity observer for unknown USV velocity. The UAV control system employs proportional–derivative (PD) control with feedforward compensation for quadrotor control design and utilizes a finite-time converging third-order differentiator to differentiate non-continuous functions. The simulation results demonstrate strong robustness in the proposed USV-UAV cooperative control algorithm. It achieves path following control in the presence of wind and wave disturbances and exhibits minimal overshoot.
Bibliographic Information
| Journal | Journal of Marine Science and Engineering |
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| Publisher | MDPI |
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| Publication Date | 2024-10-12 |
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| Publication Year | 2024 |
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| Volume | 12 |
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| Issue | 10 |
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| Pages | 1818 |
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| Document Type | Journal Article |
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| eISSN | 2077-1312 |
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| DOI | 10.3390/jmse12101818 |
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| Subject | Marine science; oceanography; marine engineering; coastal science; marine environment |
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Access Information
This article is openly available from the publisher.