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External Force Disturbance Rejection in Robotic Arms: An Adaptive Approach

Mohammad Danesh

Year
2005
Citations
19

Abstract

This paper is devoted to the problem of force sensorless disturbance rejection in robot manipulators. In the proposed approach, the control system uses position sensor signals and estimated values of external forces, instead of force sensor signals. The estimation process is performed via an adaptive force estimator. Then the estimated force vector is utilized to compensate for the force disturbance effect in order to achieve a better trajectory tracking performance. The force estimation is carried out directly using no environment model. Asymptotical stability of the proposed control system is analyzed by the invariant set and Lyapunov direct method establishing an appropriate theorem. Finally, the performance of the proposed control system is verified using numerical simulation.

Keywords

Control theory (sociology)EstimatorTrajectoryComputer sciencePosition (finance)Lyapunov functionProcess (computing)Lyapunov stabilityTracking (education)Disturbance (geology)

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