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MANIPULATION

Compensation of discrete contact state errors in regrasping experiments with the TUM-hand

Thomas Schlegl, F. Freyberger, S. Haidacher, Friedrich Pfeiffer, Martin Buss, G. Schmidt

Year
2003
Citations
6

Abstract

We present an approach to compensate for discrete contact state errors in regrasping tasks with multi-fingered robotic hands. An adaptation of reference trajectories connected with a hybrid discrete continuous control architecture allows stable grasps even if moving fingers cannot contact at the desired position on a grasped object. We propose a robust control setup that allows multiple regrasping tasks of objects to be performed using this compensation strategy and contact force optimization. Experimental results with the hydraulic robotic hand of the TUM verify the proposed approach and illustrate the increase in robustness for multi-fingered manipulation.

Keywords

Robustness (evolution)Compensation (psychology)Control theory (sociology)Computer scienceControl engineeringPosition (finance)Robotic handContact forceContact dynamicsArtificial intelligence

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