Please use this identifier to cite or link to this item: http://nopr.niscpr.res.in/handle/123456789/43181
Title: Disturbance/Uncertainty estimation based accurate trajectory tracking control of an unmanned surface vehicle with system uncertainties and external disturbances
Authors: Wang, Ning
Shuailin, Lv
Gao, Ying
Joo, Meng Er
Keywords: Finite-time stability;Integral sliding mode;Finite-time disturbance observer;Finite-time uncertainty estimator;Unmanned surface vehicle
Issue Date: Dec-2017
Publisher: NISCAIR-CSIR, India
Abstract: In this paper, disturbance/uncertainty estimation based approaches are developed to achieve high-accuracy tracking control (HTC) of an unmanned surface vehicle (USV) with system uncertainties and external disturbances. Main contributions are as follows: (1) A finite-time disturbance observer (FDO) based HTC (FDO-HTC) scheme is proposed to guarantee accurate trajectory tracking by exactly rejecting external disturbances and the integral sliding mode technique is further employed to achieve fast tracking performance; (2) To address complete unknowns including system uncertainties and external disturbances, a finite-time uncertainty estimator (FUE) based HTC (FUE-HTC) scheme is further proposed to achieve not only complicated uncertainty estimation but also precise tracking control even under harsh environments; (3) Theoretical analyses reveal that the entire closed-loop tracking system is finite-time stable, and thereby leading to fast and precise trajectory tracking control. Simulation studies and comprehensive comparisons demonstrate remarkable performance of the proposed FDO-HTC and FUE-HTC schemes.
Page(s): 2510-2518
ISSN: 0975-1033 (Online); 0379-5136 (Print)
Appears in Collections:IJMS Vol.46(12) [December 2017]

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