Planar Friction Modelling with LuGre Dynamics and Limit Surfaces

Fuente: arXiv
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Main Authors: Waltersson, Gabriel Arslan, Karayiannidis, Yiannis
Format: Preprint
Published: 2023
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author Waltersson, Gabriel Arslan
Karayiannidis, Yiannis
author_facet Waltersson, Gabriel Arslan
Karayiannidis, Yiannis
contents During planar motion, contact surfaces exhibit a coupling between tangential and rotational friction forces. This paper proposes planar friction models grounded in the LuGre model and limit surface theory. First, distributed planar extended state models are proposed and the Elasto-Plastic model is extended for multi-dimensional friction. Subsequently, we derive a reduced planar friction model, coupled with a pre-calculated limit surface, that offers reduced computational cost. The limit surface approximation through an ellipsoid is discussed. The properties of the planar friction models are assessed in various simulations, demonstrating that the reduced planar friction model achieves comparable performance to the distributed model while exhibiting ~80 times lower computational cost.
format Preprint
id arxiv_https___arxiv_org_abs_2308_01123
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Planar Friction Modelling with LuGre Dynamics and Limit Surfaces
Waltersson, Gabriel Arslan
Karayiannidis, Yiannis
Systems and Control
Robotics
During planar motion, contact surfaces exhibit a coupling between tangential and rotational friction forces. This paper proposes planar friction models grounded in the LuGre model and limit surface theory. First, distributed planar extended state models are proposed and the Elasto-Plastic model is extended for multi-dimensional friction. Subsequently, we derive a reduced planar friction model, coupled with a pre-calculated limit surface, that offers reduced computational cost. The limit surface approximation through an ellipsoid is discussed. The properties of the planar friction models are assessed in various simulations, demonstrating that the reduced planar friction model achieves comparable performance to the distributed model while exhibiting ~80 times lower computational cost.
title Planar Friction Modelling with LuGre Dynamics and Limit Surfaces
topic Systems and Control
Robotics
url https://arxiv.org/abs/2308.01123