Semi-active suspension control for formula SAE car using magneto-rheological fluid

The Magneto-rheological (MR) fluid damper is prevalent in the field of semi-active suspension whose viscosity changes by the change of magnetic field passing through the damping fluid. In this study, a semi-active suspension quarter car model is employed as a plant. The Bingham model of MRF damper i...

Full description

Saved in:
Bibliographic Details
Main Authors: As'Arry, Azizan, Naseer, Fahad Mohammad, Rahman, Tuan A. Z., Md. Rezali, Khairil Anas, Md. Zain, Mohd. Zarhamdy
Format: Conference or Workshop Item
Language:English
Published: 2017
Subjects:
Online Access:http://eprints.utm.my/id/eprint/97147/1/MohdZarhamdyMdZain2017_Semi-ActiveSuspensionControlForFormulaSAE.pdf
http://eprints.utm.my/id/eprint/97147/
http://dx.doi.org/10.1109/ISCAIE.2017.8074957
Tags: Add Tag
No Tags, Be the first to tag this record!
id my.utm.97147
record_format eprints
spelling my.utm.971472022-09-15T06:49:14Z http://eprints.utm.my/id/eprint/97147/ Semi-active suspension control for formula SAE car using magneto-rheological fluid As'Arry, Azizan Naseer, Fahad Mohammad Rahman, Tuan A. Z. Md. Rezali, Khairil Anas Md. Zain, Mohd. Zarhamdy TJ Mechanical engineering and machinery The Magneto-rheological (MR) fluid damper is prevalent in the field of semi-active suspension whose viscosity changes by the change of magnetic field passing through the damping fluid. In this study, a semi-active suspension quarter car model is employed as a plant. The Bingham model of MRF damper is exploited with PID and Fuzzy + PID controllers. The current is controlled by the controllers according to the quarter car chassis disturbance. The step road profile is used as an input disturbance to the suspension system. The displacement of sprung mass is analyzed in terms of time and frequency domain. The maximum power spectral density of acceleration for step response with Fuzzy + PID is reduced by 87.28 % as compared to passive suspension whereas PID reduced only 79.95 %. This indicates that the MRF damper with right tuned Fuzzy + PID controller provide a safer ride compared to PID controller and passive suspension. 2017 Conference or Workshop Item PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/97147/1/MohdZarhamdyMdZain2017_Semi-ActiveSuspensionControlForFormulaSAE.pdf As'Arry, Azizan and Naseer, Fahad Mohammad and Rahman, Tuan A. Z. and Md. Rezali, Khairil Anas and Md. Zain, Mohd. Zarhamdy (2017) Semi-active suspension control for formula SAE car using magneto-rheological fluid. In: 2017 IEEE Symposium on Computer Applications and Industrial Electronics, ISCAIE 2017, 24 - 25 April 2017, Langkawi Island, Kedah. http://dx.doi.org/10.1109/ISCAIE.2017.8074957
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/
language English
topic TJ Mechanical engineering and machinery
spellingShingle TJ Mechanical engineering and machinery
As'Arry, Azizan
Naseer, Fahad Mohammad
Rahman, Tuan A. Z.
Md. Rezali, Khairil Anas
Md. Zain, Mohd. Zarhamdy
Semi-active suspension control for formula SAE car using magneto-rheological fluid
description The Magneto-rheological (MR) fluid damper is prevalent in the field of semi-active suspension whose viscosity changes by the change of magnetic field passing through the damping fluid. In this study, a semi-active suspension quarter car model is employed as a plant. The Bingham model of MRF damper is exploited with PID and Fuzzy + PID controllers. The current is controlled by the controllers according to the quarter car chassis disturbance. The step road profile is used as an input disturbance to the suspension system. The displacement of sprung mass is analyzed in terms of time and frequency domain. The maximum power spectral density of acceleration for step response with Fuzzy + PID is reduced by 87.28 % as compared to passive suspension whereas PID reduced only 79.95 %. This indicates that the MRF damper with right tuned Fuzzy + PID controller provide a safer ride compared to PID controller and passive suspension.
format Conference or Workshop Item
author As'Arry, Azizan
Naseer, Fahad Mohammad
Rahman, Tuan A. Z.
Md. Rezali, Khairil Anas
Md. Zain, Mohd. Zarhamdy
author_facet As'Arry, Azizan
Naseer, Fahad Mohammad
Rahman, Tuan A. Z.
Md. Rezali, Khairil Anas
Md. Zain, Mohd. Zarhamdy
author_sort As'Arry, Azizan
title Semi-active suspension control for formula SAE car using magneto-rheological fluid
title_short Semi-active suspension control for formula SAE car using magneto-rheological fluid
title_full Semi-active suspension control for formula SAE car using magneto-rheological fluid
title_fullStr Semi-active suspension control for formula SAE car using magneto-rheological fluid
title_full_unstemmed Semi-active suspension control for formula SAE car using magneto-rheological fluid
title_sort semi-active suspension control for formula sae car using magneto-rheological fluid
publishDate 2017
url http://eprints.utm.my/id/eprint/97147/1/MohdZarhamdyMdZain2017_Semi-ActiveSuspensionControlForFormulaSAE.pdf
http://eprints.utm.my/id/eprint/97147/
http://dx.doi.org/10.1109/ISCAIE.2017.8074957
_version_ 1744353717598027776
score 13.160551