Hybrid Dynamical Model for Reluctance Actuators Including Saturation, Hysteresis and Eddy Currents

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Ramirez-Laboreo, Edgar, Roes, Maurice G. L., Sagues, Carlos
Format: Preprint
Published: 2024
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866909252005658624
author Ramirez-Laboreo, Edgar
Roes, Maurice G. L.
Sagues, Carlos
author_facet Ramirez-Laboreo, Edgar
Roes, Maurice G. L.
Sagues, Carlos
contents A novel hybrid dynamical model for single-coil, short-stroke reluctance actuators is presented in this paper. The model, which is partially based on the principles of magnetic equivalent circuits, includes the magnetic phenomena of hysteresis and saturation by means of the generalized Preisach model. In addition, the eddy currents induced in the iron core are also considered, and the flux fringing effect in the air is incorporated by using results from finite element simulations. An explicit solution of the dynamics without need of inverting the Preisach model is derived, and the hybrid automaton that results from combining the electromagnetic and motion equations is presented and discussed. Finally, an identification method to determine the model parameters is proposed and experimentally illustrated on a real actuator. The results are presented and the advantages of our modeling method are emphasized.
format Preprint
id arxiv_https___arxiv_org_abs_2402_00049
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Hybrid Dynamical Model for Reluctance Actuators Including Saturation, Hysteresis and Eddy Currents
Ramirez-Laboreo, Edgar
Roes, Maurice G. L.
Sagues, Carlos
Systems and Control
A novel hybrid dynamical model for single-coil, short-stroke reluctance actuators is presented in this paper. The model, which is partially based on the principles of magnetic equivalent circuits, includes the magnetic phenomena of hysteresis and saturation by means of the generalized Preisach model. In addition, the eddy currents induced in the iron core are also considered, and the flux fringing effect in the air is incorporated by using results from finite element simulations. An explicit solution of the dynamics without need of inverting the Preisach model is derived, and the hybrid automaton that results from combining the electromagnetic and motion equations is presented and discussed. Finally, an identification method to determine the model parameters is proposed and experimentally illustrated on a real actuator. The results are presented and the advantages of our modeling method are emphasized.
title Hybrid Dynamical Model for Reluctance Actuators Including Saturation, Hysteresis and Eddy Currents
topic Systems and Control
url https://arxiv.org/abs/2402.00049