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Sensor-guided motions for robot-based component testing

Julian Hanke, Christian Eymüller, Alexander Poeppel, Julia Reichmann, Anna Trauth, Markus G. R. Sause, Wolfgang Reif

Year
2022
Citations
3

Abstract

This paper presents the use of sensor-guided motions for robot-based component testing to compensate the robot’s path deviations under load. We implemented two different sensor-guided motions consisting of a 3D camera system to minimize the absolute deviation and a force/torque sensor mounted directly to the robot’s end effector to minimize occurring transverse forces and torques. We evaluated these two sensor-guided motions in our testing facility with a classical tensile test and a heavy-duty industrial robot. From the obtained results, it can be stated, that transverse forces as well as the absolute deviation were significantly reduced.

Keywords

RobotTorqueRobot end effectorComputer scienceComponent (thermodynamics)Control theory (sociology)EngineeringSimulationArtificial intelligencePhysics

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