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MANIPULATION

Energy-based trajectory tracking and vibration control for multilink highly flexible manipulators

Ivan Giorgio, Dionisio Del Vescovo

Year
2019
Citations
59
Access
Open access

Abstract

In this paper, a discrete model is adopted, as proposed by Hencky for elastica based on rigid bars and lumped rotational springs, to design the control of a lightweight planar manipulator with multiple highly flexible links. This model is particularly suited to deal with nonlinear equations of motion as those associated with multilink robot arms, because it does not include any simplification due to linearization, as in the assumed modes method. The aim of the control is to track a trajectory of the end effector of the robot arm, without the onset of vibrations. To this end, an energy-based method is proposed. Numerical simulations show the effectiveness of the presented approach.

Keywords

TrajectoryTracking (education)VibrationControl theory (sociology)Computer scienceEnergy (signal processing)Control (management)Artificial intelligenceAcousticsPhysics

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