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Adaptive Fuzzy Control of Autonomous Surface Vehicles for Fast Accurate Trajectory Tracking.

, , and . Int. J. Fuzzy Syst., 25 (6): 2411-2422 (September 2023)

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Adaptive Fuzzy Control of Autonomous Surface Vehicles for Fast Accurate Trajectory Tracking., , and . Int. J. Fuzzy Syst., 25 (6): 2411-2422 (September 2023)Robust Iterative Learning Control for output tracking via second-order sliding mode technique., and . ACC, page 2051-2056. IEEE, (2010)An optimal design of PD-type iterative learning control with monotonic convergence., and . ISIC, page 55-60. IEEE, (2002)Time Domain Solution Analysis and Novel Admissibility Conditions of Singular Fractional-Order Systems., , , and . IEEE Trans. Circuits Syst. I Regul. Pap., 68 (2): 842-855 (2021)On Practical Input-Output Finite-Time Stability Based on Principle of Self-Support., , and . ICCMA, page 131-136. IEEE, (2019)Algebraic Hinfty Design of Higher-Order Iterative Learning Controllers., , and . ISIC, page 1207-1212. IEEE, (2005)Time-optimal magnetic attitude control for small spacecraft., , and . CDC, page 255-260. IEEE, (2004)Monotonic Convergent Iterative Learning Controller Design Based on Interval Model Conversion., , and . ISIC, page 1201-1206. IEEE, (2005)Multi-UAVs collaborative tracking of moving target with maximized visibility in urban environment., , , and . J. Frankl. Inst., 359 (11): 5512-5532 (2022)Some sensing and perception techniques for an omnidirectional ground vehicle with a laser scanner., , , and . ISIC, page 690-695. IEEE, (2002)