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Learning Robot Force/Position Control for Repetitive High Speed Applications with Unknown Non–Linear Contact Stiffness

Herbert Parzer, Hubert Gattringer, Andreas Müller, Ronald Naderer

Year
2015
Citations
3
Access
Open access

Abstract

Abstract This paper proposes a learning robot force/position control for high speed force trajectory following. Following high speed force trajectories in different repetitve robotic applications is a challenging field in robot force control. If the end–effector should provide a contact force while following a position trajectory in the non–force controlled direction a parallel force / position control is suitable. However, when it comes to high speed tasks this force control method reaches its limit. The problem can be solved by using an iterative learning control method in combination with the parallel force/position control. In this paper the learning force control method is introduced and experimental results are presented. (© 2015 Wiley‐VCH Verlag GmbH & Co. KGaA, Weinheim)

Keywords

Position (finance)TrajectoryControl theory (sociology)Contact forceForce field (fiction)StiffnessRobotIterative learning controlComputer scienceEngineering

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