Home /Research /Gain-Learning Sliding Mode Control of Robot Manipulators with Time-Delay Estimation
MANIPULATION

Gain-Learning Sliding Mode Control of Robot Manipulators with Time-Delay Estimation

Dang Xuan Ba, My-Ha Le

Year
2019
Citations
3

Abstract

In this paper, an adaptive robust controller for position tracking control of robot manipulators is proposed. To effectively approximate the system dynamics, a conventional time-delay estimator is employed. To realize the control objective, the controller is then designed based on a robust sliding mode scheme and incorporated with the estimation results obtained. To integrate the flexibility into the controller, a new gain-adaptive mechanism is adopted in which driving and robust control gains are freely varied to ensure asymptotic control performance. The stability and effectiveness of the proposed controller are verified using the Lyapunov-based approaches and simulation results.

Keywords

Control theory (sociology)Controller (irrigation)Computer scienceEstimatorFlexibility (engineering)Robust controlAdaptive controlSliding mode controlLyapunov functionStability (learning theory)

Related papers

Browse all MANIPULATION papers