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A nonlinear disturbance observer for robotic manipulators

IEEE Transactions on Industrial Electronics · 2000 · Vol. 47(4) · pp. 932–938
Wen‐Hua ChenD.J. BallanceP.J. GawthropJ. O’Reilly

Abstract

A new nonlinear disturbance observer (NDO) for robotic manipulators is derived in this paper. The global exponential stability of the proposed disturbance observer (DO) is guaranteed by selecting design parameters, which depend on the maximum velocity and physical parameters of robotic manipulators. This new observer overcomes the disadvantages of existing DOs, which are designed or analyzed by linear system techniques. It can be applied in robotic manipulators for various purposes such as friction compensation, independent joint control, sensorless torque control and fault diagnosis. The performance of the proposed observer is demonstrated by the friction estimation and compensation for a two-link robotic manipulator. Both simulation and experimental results show the NDO works well.

Teleoperation and Haptic SystemsAdaptive Control of Nonlinear SystemsRobot Manipulation and LearningControl theory (sociology)Nonlinear systemCompensation (psychology)Observer (physics)Robot manipulatorTorqueControl engineeringComputer scienceRobotEngineering

Funding

  • Nanjing University of Aeronautics and Astronautics
Citations
1,696
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References
Torque sensorless control in multidegree-of-freedom manipulator
IEEE Transactions on Industrial Electronics · 1993 · 1,217 citations
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