Adaptive nonsingular fast terminal sliding mode control for underwater manipulator robotics with asymmetric saturation actuators
Zengcheng ZHOU1
Guoyuan TANG2
Hui HUANG1
Lijun HAN1
Ruikun XU1
1.School of Naval Architecture and Ocean Engineering, Huazhong University of Science and Technology, Wuhan Hubei 430074, China2.School of Naval Architecture and Ocean Engineering, Huazhong University of Science and Technology, Wuhan Hubei 430074, China;Collaborative Innovation Center for Advanced Ship and Deep-sea Exploration(CISSE), Wuhan Hubei 430074, China
摘要:In this paper,an adaptive nonsingular fast terminal sliding mode control (ANFTSMC) is proposed for underwater manipulator robotics with asymmetric actuator saturations and unknown time-varying (TV) external disturbances.Firstly,the nonsingular fast terminal sliding mode (NFTSM) control scheme is conducted for the underwater manipulator robotics,which guarantees the boundedness of all the signals in the control system.Secondly,the adaptive method and the smooth hyperbolic tangent (tanh) function are introduced to address the unknown TV external disturbances and the input saturation errors.Thus the prior knowledge about the upper bounds of the system uncertainties is not needed in this paper.To deal with the nonlinear asymmetric input saturation issue,a Gaussian error function is employed in the asymmetric saturation module so that the discontinuous input signals can be transformed into smooth forms.Thirdly,the rigorous mathematical verification is conducted to demonstrate the stability and finite-time convergence of the closed-loop control system via the Lyapunov theory.Finally,numerical simulations are performed on a two-link underwater manipulator robotic system to illustrate the effectiveness of the proposed controller.
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论文发表日期:2020-02-05
在线出版日期:2025-08-15(本平台首次上网日期,不代表文献的发表时间)
页数:11( 81-91 )
英文信息展开
控制理论与技术(英文版)

控制理论与技术(英文版)

EI
ISSN:2095-6983
年,卷(期):2020,18(1)