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Sensorimotor primitives for robotic assembly skills

James D. Morrow, P.K. Khosla

Year
2002
Citations
32

Abstract

Many researchers are interested in developing robust, skill-achieving robot programs. The authors propose the development of a sensorimotor primitive layer which bridges the gap between the robot/sensor system and a class of tasks by providing useful encapsulations of sensing and action. Skills can then be constructed from this library of sensor-driven primitives. This reflects a move away from the separation of sensing and action in robot programming of task strategies towards the integration of sensing and action in a domain-general way for broad classes of tasks. For the domain of rigid-body assembly, the authors exploit the motion constraints which define assembly to develop force sensor-driven primitives. The authors report on the experimental results of a D-connector insertion skill implemented using several force-driven primitives.

Keywords

Computer scienceRobotExploitDomain (mathematical analysis)Task (project management)Action (physics)Human–computer interactionMotion (physics)Class (philosophy)Artificial intelligence

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