Control Approaches for Magnetic Levitation Systems and Recent Works on Its Controllers’ Optimization: A Review

Magnetic levitation (Maglev) system is a stimulating nonlinear mechatronic system in which an electromagnetic force is required to suspend an object (metal sphere) in the air. The electromagnetic force is very sensitive to the noise, which can create acceleration forces on the metal sphere, causing...

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Main Authors: Abdualrhman Abdalhadi, Herman Wahid
Format: Article
Language:English
Published: ARQII PUBLICATION 2021-08-01
Series:Applications of Modelling and Simulation
Subjects:
Online Access:http://arqiipubl.com/ojs/index.php/AMS_Journal/article/view/300/124
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spelling doaj-742afa38d0bd4dcb9478fe9d1d49a4942021-08-24T15:30:04ZengARQII PUBLICATIONApplications of Modelling and Simulation2600-80842021-08-015173183Control Approaches for Magnetic Levitation Systems and Recent Works on Its Controllers’ Optimization: A ReviewAbdualrhman Abdalhadi0Herman Wahid1School of Electrical Engineering, Universiti Teknologi Malaysia, 81310 UTM Skudai, Johor, MalaysiaSchool of Electrical Engineering, Universiti Teknologi Malaysia, 81310 UTM Skudai, Johor, MalaysiaMagnetic levitation (Maglev) system is a stimulating nonlinear mechatronic system in which an electromagnetic force is required to suspend an object (metal sphere) in the air. The electromagnetic force is very sensitive to the noise, which can create acceleration forces on the metal sphere, causing the sphere to move into the unbalanced region. Maglev benefits the industry since 1842, in which the maglev system has reduced power consumption, increased power efficiency, and reduced maintenance cost. The typical applications of Maglev system are in wind turbine for power generation, Maglev trains and medical tools. This paper presents a comparative assessment of controllers for the maglev system and ways for optimally tuning the controllers’ parameters. Several types of controllers for maglev system are also reviewed throughout this paper.http://arqiipubl.com/ojs/index.php/AMS_Journal/article/view/300/124magnetic levitationmodellingoptimizationnonlinear controllerpid controller
collection DOAJ
language English
format Article
sources DOAJ
author Abdualrhman Abdalhadi
Herman Wahid
spellingShingle Abdualrhman Abdalhadi
Herman Wahid
Control Approaches for Magnetic Levitation Systems and Recent Works on Its Controllers’ Optimization: A Review
Applications of Modelling and Simulation
magnetic levitation
modelling
optimization
nonlinear controller
pid controller
author_facet Abdualrhman Abdalhadi
Herman Wahid
author_sort Abdualrhman Abdalhadi
title Control Approaches for Magnetic Levitation Systems and Recent Works on Its Controllers’ Optimization: A Review
title_short Control Approaches for Magnetic Levitation Systems and Recent Works on Its Controllers’ Optimization: A Review
title_full Control Approaches for Magnetic Levitation Systems and Recent Works on Its Controllers’ Optimization: A Review
title_fullStr Control Approaches for Magnetic Levitation Systems and Recent Works on Its Controllers’ Optimization: A Review
title_full_unstemmed Control Approaches for Magnetic Levitation Systems and Recent Works on Its Controllers’ Optimization: A Review
title_sort control approaches for magnetic levitation systems and recent works on its controllers’ optimization: a review
publisher ARQII PUBLICATION
series Applications of Modelling and Simulation
issn 2600-8084
publishDate 2021-08-01
description Magnetic levitation (Maglev) system is a stimulating nonlinear mechatronic system in which an electromagnetic force is required to suspend an object (metal sphere) in the air. The electromagnetic force is very sensitive to the noise, which can create acceleration forces on the metal sphere, causing the sphere to move into the unbalanced region. Maglev benefits the industry since 1842, in which the maglev system has reduced power consumption, increased power efficiency, and reduced maintenance cost. The typical applications of Maglev system are in wind turbine for power generation, Maglev trains and medical tools. This paper presents a comparative assessment of controllers for the maglev system and ways for optimally tuning the controllers’ parameters. Several types of controllers for maglev system are also reviewed throughout this paper.
topic magnetic levitation
modelling
optimization
nonlinear controller
pid controller
url http://arqiipubl.com/ojs/index.php/AMS_Journal/article/view/300/124
work_keys_str_mv AT abdualrhmanabdalhadi controlapproachesformagneticlevitationsystemsandrecentworksonitscontrollersoptimizationareview
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