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MANIPULATION

Passivity-based Object-Level Impedance Control for a Multifingered Hand

Thomas Wimboeck, Christian Ott, G. Hirzinger

Year
2006
Citations
88

Abstract

Holding an object and manipulating it in 6D is a key application for multifingered robot hands. In the past many algorithms were proposed based on a weighted pseudoinverse of the grasp map combined with an internal force control. The majority of these algorithms require robust contact detection/tracking and switching controllers. Employing the virtual object introduced by Stramigioli we present an object-level control law. We define a novel virtual object frame based on the robot hand configuration. Our control law takes a desired object frame and desired grasping forces as input, it is passive, has an intuitive physical meaning, and stability is even given in case a finger looses contact with the object. A damping design as a function of the desired object stiffness and the combined hand-object inertia is presented. The performance of the controller is proven in two experiments implemented on the DLR Hand II

Keywords

GRASPObject (grammar)Impedance controlComputer scienceControl theory (sociology)Computer visionPassivityArtificial intelligenceFrame (networking)Robot

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