Magnetorheological damper control for semi-active suspension system using skyhook-differential evolution

Magnetorheological (MR) damper is an effective semi-active vibration actuator which can produce controllable damping force by supplying proper voltage or electrical current as an input. By altering the input, the behaviour of MR fluid will change accordingly from free flow to semi-solid state. A sem...

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Main Authors: Ab. Talib, Mat Hussin, Muhammad Afandi, Mohd. Ariff Durranie, Mat Darus, Intan Zaurah, Mohd. Yatim, Hanim, Asus, Zainab, Mohd. Yamin, Ahmad Hafizal, Hadi, Muhamad Sukri
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Published: Springer Science and Business Media Deutschland GmbH 2022
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Online Access:http://eprints.utm.my/id/eprint/100492/
http://dx.doi.org/10.1007/978-981-33-4597-3_16
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spelling my.utm.1004922023-04-14T02:14:44Z http://eprints.utm.my/id/eprint/100492/ Magnetorheological damper control for semi-active suspension system using skyhook-differential evolution Ab. Talib, Mat Hussin Muhammad Afandi, Mohd. Ariff Durranie Mat Darus, Intan Zaurah Mohd. Yatim, Hanim Asus, Zainab Mohd. Yamin, Ahmad Hafizal Hadi, Muhamad Sukri TJ Mechanical engineering and machinery Magnetorheological (MR) damper is an effective semi-active vibration actuator which can produce controllable damping force by supplying proper voltage or electrical current as an input. By altering the input, the behaviour of MR fluid will change accordingly from free flow to semi-solid state. A semi-active suspension system consists of MR damper combines the advantages of both passive and active suspensions which is more economical, safe, mechanical simplicity and does not required a large power supply. Therefore, a lot of continuous efforts have been done to develop a vehicle suspension system incorporating with MR damper to reduce the vibration and road disturbance in order to provide a good ride comfort to driver and passenger. This study intends to investigate the performance of quarter car model in terms of body acceleration and body displacement adopted by the Skyhook-Differential Equation controller. Simulation and experimental validation data of MR damper model tests show that the modified Bouc-wen model can be used to represent the MR damper as the model is more accurately predicts the behaviour of the MR damper compared to other parametric models. Skyhook controller utilizing by Differential Evolution (DE) is used in order to optimize the system and its performance is improved with up to 63.04% as compared to the other controller responses. Springer Science and Business Media Deutschland GmbH 2022 Book Section PeerReviewed Ab. Talib, Mat Hussin and Muhammad Afandi, Mohd. Ariff Durranie and Mat Darus, Intan Zaurah and Mohd. Yatim, Hanim and Asus, Zainab and Mohd. Yamin, Ahmad Hafizal and Hadi, Muhamad Sukri (2022) Magnetorheological damper control for semi-active suspension system using skyhook-differential evolution. In: Recent Trends in Mechatronics Towards Industry 4.0 Selected Articles from iM3F 2020, Malaysia. Lecture Notes in Electrical Engineering, 730 (NA). Springer Science and Business Media Deutschland GmbH, Singapore, pp. 161-171. ISBN 978-981334596-6 http://dx.doi.org/10.1007/978-981-33-4597-3_16 DOI:10.1007/978-981-33-4597-3_16
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TJ Mechanical engineering and machinery
spellingShingle TJ Mechanical engineering and machinery
Ab. Talib, Mat Hussin
Muhammad Afandi, Mohd. Ariff Durranie
Mat Darus, Intan Zaurah
Mohd. Yatim, Hanim
Asus, Zainab
Mohd. Yamin, Ahmad Hafizal
Hadi, Muhamad Sukri
Magnetorheological damper control for semi-active suspension system using skyhook-differential evolution
description Magnetorheological (MR) damper is an effective semi-active vibration actuator which can produce controllable damping force by supplying proper voltage or electrical current as an input. By altering the input, the behaviour of MR fluid will change accordingly from free flow to semi-solid state. A semi-active suspension system consists of MR damper combines the advantages of both passive and active suspensions which is more economical, safe, mechanical simplicity and does not required a large power supply. Therefore, a lot of continuous efforts have been done to develop a vehicle suspension system incorporating with MR damper to reduce the vibration and road disturbance in order to provide a good ride comfort to driver and passenger. This study intends to investigate the performance of quarter car model in terms of body acceleration and body displacement adopted by the Skyhook-Differential Equation controller. Simulation and experimental validation data of MR damper model tests show that the modified Bouc-wen model can be used to represent the MR damper as the model is more accurately predicts the behaviour of the MR damper compared to other parametric models. Skyhook controller utilizing by Differential Evolution (DE) is used in order to optimize the system and its performance is improved with up to 63.04% as compared to the other controller responses.
format Book Section
author Ab. Talib, Mat Hussin
Muhammad Afandi, Mohd. Ariff Durranie
Mat Darus, Intan Zaurah
Mohd. Yatim, Hanim
Asus, Zainab
Mohd. Yamin, Ahmad Hafizal
Hadi, Muhamad Sukri
author_facet Ab. Talib, Mat Hussin
Muhammad Afandi, Mohd. Ariff Durranie
Mat Darus, Intan Zaurah
Mohd. Yatim, Hanim
Asus, Zainab
Mohd. Yamin, Ahmad Hafizal
Hadi, Muhamad Sukri
author_sort Ab. Talib, Mat Hussin
title Magnetorheological damper control for semi-active suspension system using skyhook-differential evolution
title_short Magnetorheological damper control for semi-active suspension system using skyhook-differential evolution
title_full Magnetorheological damper control for semi-active suspension system using skyhook-differential evolution
title_fullStr Magnetorheological damper control for semi-active suspension system using skyhook-differential evolution
title_full_unstemmed Magnetorheological damper control for semi-active suspension system using skyhook-differential evolution
title_sort magnetorheological damper control for semi-active suspension system using skyhook-differential evolution
publisher Springer Science and Business Media Deutschland GmbH
publishDate 2022
url http://eprints.utm.my/id/eprint/100492/
http://dx.doi.org/10.1007/978-981-33-4597-3_16
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score 13.160551