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Event-Triggered Neural-Predictor-Based FCS-MPC for MMC., , , , , , и . IEEE Trans. Ind. Electron., 69 (6): 6433-6440 (2022)Cooperative Path Following Ring-Networked Under-Actuated Autonomous Surface Vehicles: Algorithms and Experimental Results., , , , и . IEEE Trans. Cybern., 50 (4): 1519-1529 (2020)Flocking of Under-Actuated Unmanned Surface Vehicles via Deep Reinforcement Learning and Model Predictive Path Integral Control., , , , и . IEEE Trans. Instrum. Meas., (2024)An Overview of Recent Advances in Coordinated Control of Multiple Autonomous Surface Vehicles., , , и . IEEE Trans. Ind. Informatics, 17 (2): 732-745 (2021)Self-Triggered Synchronized Path Maneuvering of Constrained Uncertain MIMO Nonlinear Systems Based on Command Optimization., , , , и . IEEE Trans. Netw. Sci. Eng., 11 (1): 710-723 (января 2024)Observer-Based Finite-Time Control for Distributed Path Maneuvering of Underactuated Unmanned Surface Vehicles With Collision Avoidance and Connectivity Preservation., , , и . IEEE Trans. Syst. Man Cybern. Syst., 51 (8): 5105-5115 (2021)Modular Adaptive Control for LOS-Based Cooperative Path Maneuvering of Multiple Underactuated Autonomous Surface Vehicles., , , и . IEEE Trans. Syst. Man Cybern. Syst., 47 (7): 1613-1624 (2017)Distributed robust state and output feedback controller designs for rendezvous of networked autonomous surface vehicles using neural networks., , , , и . Neurocomputing, (2013)Path following of marine surface vehicles with dynamical uncertainty and time-varying ocean disturbances., , и . Neurocomputing, (2016)Distributed Maneuvering of Autonomous Surface Vehicles Based on Neurodynamic Optimization and Fuzzy Approximation., , и . IEEE Trans. Control. Syst. Technol., 26 (3): 1083-1090 (2018)