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Kinematic models for robot compliant motion with identification of uncertainties

Herman Bruyninckx

Year
1995
Citations
13

Abstract

This thesis is about force controlled compliant robot motion, with the emphasis on: 1) modelling of arbitrary and time-varying contact situations between a rigid manipulated object and rigid objects in its environment, 2) motion specification in terms of allowed velocities and accelerations for the manipulated object, maintaining the contact with the physical constraints but without generating too large contact forces, and 3) on-line identification of uncertainties in the instantaneous geometric parameters of the motion constraint model, i.e., the position of the contact points, the direction of the contact normal, and the local curvature parameters. Requirements for generality, simplicity and robustness have guided the research work. The main new theoretical results of this thesis are: 1) the successful use of the kinematics of mechanisms as the unifying framework for the integration of modelling, specification and identification; 2) the use of the first and second order geometric p...

Keywords

KinematicsIdentification (biology)Motion (physics)Computer scienceRobotArtificial intelligenceComputer visionPhysicsClassical mechanics

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