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MANIPULATION

A Fuzzy Adaptive Sliding Mode Controller for Tracking Control of Robotic Manipulators

Tien Dung Le, Hee‐Jun Kang

Year
2012
Citations
2
Access
Open access

Abstract

This paper describes the design of a fuzzy adaptive sliding mode controller for tracking control of robotic manipulators. The proposed controller incorporates a modified traditional sliding mode controller to drive the system state to a sliding surface and then keep the system state on this surface, and a fuzzy logic controller to accelerate the reaching phase. The stability of the control system is ensured by using Lyapunov theory. To verify the effectiveness of the proposed controller, computer simulation is conducted for a five-bar planar robotic manipulator. The simulation results show that the proposed controller can improve the reaching time and eliminate chattering of the control system at the same time.

Keywords

Control theory (sociology)Controller (irrigation)Fuzzy logicSliding mode controlControl engineeringEngineeringFuzzy control systemTracking (education)Lyapunov functionLyapunov stability

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