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MANIPULATION

Sensorless and constraint based peg-in-hole task execution with a dual-arm robot

Matteo Parigi Polverini, Andrea Maria Zanchettin, Sebastiano Castello, Paolo Rocco

Year
2016
Citations
48

Abstract

Fast and sensorless peg-in-hole insertion is a challenging task for a robotic manipulator. In order to deal with the peg-in-hole insertion problem without any need of an external force/torque sensor, this paper proposes to actively accomplish compliance in the insertion task relying on an admittance based control. This is combined with a real-time trajectory generator, by means of constraint based optimization, where a model-based sensorless observer of interaction forces is exploited. Experiments have been performed on an ABB dual-arm 7-DOF lightweight prototype robot to validate the proposed approach, with an insertion speed comparable to human manual execution and in presence of geometric uncertainty.

Keywords

TorqueComputer scienceConstraint (computer-aided design)Task (project management)Robotic armRobotDual (grammatical number)TrajectoryControl theory (sociology)Observer (physics)

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