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On manipulator posture planning for large force tasks

Evangelos Papadopoulos, Yves Gonthier

Year
2002
Citations
12

Abstract

Studies the problem of large force/torque application using robotic systems with limited force/torque actuators. For such systems, the available workspace may be smaller than its reachable workspace. It is shown that redundancy increases the force capability and workspace of a robotic system. To plan redundant manipulator postures during force tasks, a new method based on a min-max optimization scheme is used. Unlike other norm-based methods, the proposed one guarantees that no actuator capabilities are exceeded, and that the required force/torque of the most loaded actuator is minimized. Examples that demonstrate the validity and usefulness of the proposed method are included.

Keywords

WorkspaceTorqueActuatorRedundancy (engineering)Computer scienceControl theory (sociology)Robot manipulatorHaptic technologyMobile manipulatorControl engineering

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