Sensors · 2021 · 18 citations · 101 references
The main goal of the research is to design an efficient controller for a dynamic positioning system for autonomous surface ships using the backstepping technique for the case of full-state feedback in the presence of unknown external disturbances. The obtained control commands are distributed to each actuator of the overactuated vessel via unconstrained control allocation. The numerical hydrodynamic model of <i>CyberShip I</i> and the model of environmental disturbances are applied to simulate the operation of the ship control system using the time domain analysis. Simulation studies are presented to illustrate the effectiveness of the proposed controller and its robustness to external disturbances.
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Dynamic surface control for a class of nonlinear systems
D. Swaroop, J. Karl Hedrick, Pak Yip et al. · IEEE Transactions on Automatic Control · 2000 · 2.4K citations
Unmanned surface vehicles: An overview of developments and challenges
Zhixiang Liu, Youmin Zhang, Xiang Yu et al. · Annual Reviews in Control · 2016 · 1.1K citations
Tor Arne Johansen, Thor I. Fossen · Automatica · 2013 · 1K citations
Control Strategy, Engineering, Dynamic Resource Allocation +5