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A Dynamic Optimization Approach for Sloshing Free Transport of Liquid Filled Containers using an Industrial Robot

Jan Reinhold, Manuel Amersdorfer, Thomas Meurer

Year
2019
Citations
26

Abstract

The handling of liquid filled containers is a challenging task in industrial manufacturing processes. Without an appropriate trajectory sloshing of the liquid occurs during point-to-point motion. This paper presents a time optimal trajectory planning approach that is used for feedforward motion control and prevents the liquid filled container from sloshing. For this, a model of the liquid inside the container is included into the formulation of a constrained dynamic optimization problem to achieve rest-to-rest motion while simultaneously avoiding obstacles. The presented approach is validated by simulation and on an experimental setup using an industrial robot handling the container.

Keywords

Slosh dynamicsContainer (type theory)TrajectoryRobotComputer sciencePoint (geometry)Motion planningSimulationTrajectory optimizationFeed forward

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