A hybrid dynamic model and parameter estimation method for accurately simulating overhead cranes with friction
Abstract
This paper presents a new approach to accurately simulating 3D overhead cranes with friction. Although nonlinear friction dynamics has a significant impact on these systems, accurately modeling this phenomenon in simulations is a significant challenge. Traditional methods often rely on imprecise approximations of friction or require excessive computational times for reliable results. To address this, we present a hybrid dynamical model that features a trade-off between high-fidelity friction modeling and computational efficiency. Furthermore, we present a step-by-step algorithm for the comprehensive estimation of all unknown system parameters, including friction. This methodology is based on Bayesian Linear Regression and Least Squares (LS) estimations. Finally, experimental validation with a laboratory crane confirms the effectiveness of the proposed modeling and estimation approach.
Cite
@article{arxiv.2509.13330,
title = {A hybrid dynamic model and parameter estimation method for accurately simulating overhead cranes with friction},
author = {Jorge Vicente-Martinez and Edgar Ramirez-Laboreo},
journal= {arXiv preprint arXiv:2509.13330},
year = {2026}
}
Comments
10 pages, 12 figures. Major changes in all the sections