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A new smooth robust control design for uncertain nonlinear systems with non-vanishing disturbances

Bin Xian, Yao Zhang

Year
2015
Citations
8

Abstract

In this paper, we consider the control problem for a general class of nonlinear system subjected to uncertain dynamics and non-varnishing disturbances. A smooth nonlinear control algorithm is presented to tackle these uncertainties and disturbances. The proposed control design employs the integral of a nonlinear sigmoid function to compensate the uncertain dynamics, and achieve a uniformly semi-global practical asymptotic stable tracking control of the system outputs. A novel Lyapunov-based stability analysis is employed to prove the convergence of the tracking errors and the stability of the closed-loop system. Numerical simulation results on a two-link robot manipulator are presented to illustrate the performance of the proposed control algorithm comparing with the layer-boundary sliding mode controller and the robust of integration of sign of error control design. Furthermore, real-time experiment results for the attitude control of a quadrotor helicopter are also included to confirm the effectiveness of the proposed algorithm.

Keywords

Control theory (sociology)Nonlinear systemSigmoid functionLyapunov functionSliding mode controlSign functionConvergence (economics)Exponential stabilityController (irrigation)Robust control

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