Distributed Robust Fast Finite-Time Formation Control of Underactuated ASVs in Presence of Information Interruption
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Published:2022-11-18
Issue:11
Volume:10
Page:1775
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ISSN:2077-1312
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Container-title:Journal of Marine Science and Engineering
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language:en
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Short-container-title:JMSE
Author:
Zhang Guoqing,
Han Jun,
Li Jiqiang,
Zhang XiankuORCID
Abstract
To adapt to complex navigation conditions, this paper addresses the coordination formation of autonomous surface vehicles (ASVs) with the constraint of information interruption. For this purpose, a distributed robust fast finite-time formation control algorithm is proposed by fusion of the directed graph and neural network method. In the strategy, the graph theory is utilized for the channel of information transmission to maintain the stability of the formation system. In addition, the radial basic function (RBF) neural network is employed to approximate the structure uncertainty. Due to the merits of the robust neural damping technique, only two adaptive parameters are designed to compensate the perturbation from the model uncertainty and external environmental. Furthermore, an improved dynamic surface control (DSC) technology is developed for constituting the exponential term of the Lyapunov function. It is proven that the proposed scheme is able to achieve consensus tracking in finite time quickly, and the errors rapidly approach a small region around the origin. Finally, the feasibility and effectiveness of the algorithm are verified by two numerical simulations.
Funder
National Natural Science Foundation of China
Science and Technology Innovation Foundation of Dalian City
Liaoning BaiQianWan Talents Program
Dalian Innovation Team Support Plan in the Key Research Field
Fundamental Research Funds for the Central Universities
Subject
Ocean Engineering,Water Science and Technology,Civil and Structural Engineering
Reference28 articles.
1. Unmanned surface vehicles: An overview of developments and challenges;Annu. Rev. Control.,2016
2. Some remarks on a conjecture in parameter adaptive control;Syst. Control. Lett.,1983
3. Robust adaptive formation control of underactuated autonomous surface vessels based on MLP and DOB;Nonlinear Dyn.,2018
4. Constrained coordinated path-following control for underactuated surface vessels with the disturbance rejection mechanism;Ocean Eng.,2020
5. Improved decentralized finite-time formation control of underactuated USVs via a novel disturbance observer;Ocean Eng.,2019
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