Adaptive sliding mode-based full-state stabilization control of an underactuated hovercraft

被引:0
作者
Fazal ur Rehman
Ahmad Mahmood
机构
[1] Capital University of Science and Technology,Department of Electrical Engineering
来源
International Journal of Dynamics and Control | 2024年 / 12卷
关键词
Full state; Stabilization; Sliding surface; Adaptive sliding mode control; Reaching law; Planar position; Orientation;
D O I
暂无
中图分类号
学科分类号
摘要
Hovercraft is commonly used for military operations, transportation, and scientific research. Therefore, considering the use of hovercraft, it is very important to design a controller that ensures its stabilization to enhance its performance. Since a hovercraft has only two control inputs with three degrees of freedom, designing a stabilization controller is a very difficult task. The hovercraft model is derived from a simple ship equation that is nonlinear and underactuated. In this work, the controller design is conducted for the full-state stabilization problem to stabilize the underactuated hovercraft. Using the inputs and state transformations, the dynamic model of the hovercraft is transformed into an equivalent system consisting of two cascaded connected subsystems. Dynamic input terms are introduced due to the modified dynamic cascaded system, and an adaptive sliding mode control (SMC) scheme is employed to handle these terms and to clutch the stabilization problem. To eliminate the high-frequency switching effect in SMC and enhance the speed of reaching phase, an atan-based strong exponential reaching law is employed. To construct the stabilizing controller, an appropriate Hurwitz sliding surface and a Lyapunov function are selected, and the adaptive laws are derived such that the derivative of the Lyapunov function is strictly negative, so as to guarantee the stability of the closed-loop system. To demonstrate the efficacy of the proposed control, numerical simulations are run to stabilize the planar position and orientation, revealing that all states and control inputs are asymptotically convergent to the origin since a quantitative comparison is also made between the classical switching law and the suggested switching law for energy consumption.
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页码:1512 / 1521
页数:9
相关论文
共 46 条
[1]  
Pettersen KY(2001)Semi-global practical stabilization and disturbance adaptation for an underactuated ship Model Identif Control Nor Res Bull 22 89-101
[2]  
Nijmeijer H(2002)Global uniform asymptotic stabilization of an underactuated surface vessel IEEE Trans Autom Control 47 1759-1762
[3]  
Mazenc F(2005)Global time-varying stabilization of underactuated surface vessel IEEE Trans Autom Control 50 859-864
[4]  
Pettersen K(2006)Asymptotic backstepping stabilization of an underactuated surface vessel IEEE Trans Control Syst Technol 14 1150-1157
[5]  
Nijmeijer H(2009)Global k-exponential asymptotic stabilization of underactuated surface vessels Syst Control Lett 58 194-201
[6]  
Dong W(2009)Adaptive output feedback stabilization for nonholonomic systems with strong nonlinear drifts Nonlinear Anal Theory Methods Appl 70 904-920
[7]  
Guo Y(2010)Global stabilisation and tracking control of underactuated surface vessels IET Control Theory Appl 4 71-88
[8]  
Ghommam J(2015)Robust global uniform asymptotic stabilization of underactuated surface vessels with unknown model parameters Int J Robust Nonlinear Control 25 1037-1050
[9]  
Mnif F(2014)LMI-based model predictive control for underactuated surface vessels with input constraints Abstr Appl Anal 2014 1-9
[10]  
Benali A(2015)Robust position stabilization of underactuated surface vessels with unknown modeling parameters via simple P/D-like feedback: the center manifold approach: robust position stabilization of USVs via simple P/D-like feedback Asian J Control 17 1222-1232