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Active vibration canceling of a cable-driven parallel robot using reaction wheels

Xavier Weber, Loïc Cuvillon, Jacques Gangloff

Year
2014
Citations
38

Abstract

Cable-driven parallel robots allow for fast motions and huge workspaces, using relatively lightweight moving masses and low-power actuation. This kind of structure yields usually very cost-effective solutions. However, the wider the workspace, the lower the equivalent stiffness of the end-effector yielding inaccuracies due mainly to unwanted vibrations. In this paper, we propose a new approach to compensate for these vibrations. Reaction wheels are used to cancel rotational oscillations of the platform. A planar cable-driven robot built with cheap and lightweight Lego Mindstorms parts is used to validate the concept.

Keywords

WorkspaceRobotVibrationPlanarStiffnessComputer scienceParallel manipulatorPower (physics)Robot end effectorEngineering

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