Intelligent Optimization of Force Tracking Parameters for MR Damper Modelling using Firefly Algorithm

Magnetorheological (MR) damper system is commonly used to replace the conventional damper in the suspension system due to its low power consumption, fast time response and simple structure. Since inner loop controller is very important in defining the amount of current supplied to the MR damper syst...

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Main Authors: Mat Hussin, Ab Talib, Hanim, Mohd Yatim, Nik Mohd Ridzuan, Shaharuddin, Muhamad Sukri, Hadi, Intan Zaurah, Mat Darus, Annisa, Jamali
Format: Proceeding
Language:English
Published: 2020
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Online Access:http://ir.unimas.my/id/eprint/33087/1/Intelligent%20Optimization%20of%20Force%20Tracking%20Parameters%20for%20MR%20Damper%20Modelling%20using%20Firefly%20Algorithm_pdf.pdf
http://ir.unimas.my/id/eprint/33087/
https://ieeexplore.ieee.org/document/9221705
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spelling my.unimas.ir.330872020-11-27T12:58:09Z http://ir.unimas.my/id/eprint/33087/ Intelligent Optimization of Force Tracking Parameters for MR Damper Modelling using Firefly Algorithm Mat Hussin, Ab Talib Hanim, Mohd Yatim Nik Mohd Ridzuan, Shaharuddin Muhamad Sukri, Hadi Intan Zaurah, Mat Darus Annisa, Jamali T Technology (General) TJ Mechanical engineering and machinery Magnetorheological (MR) damper system is commonly used to replace the conventional damper in the suspension system due to its low power consumption, fast time response and simple structure. Since inner loop controller is very important in defining the amount of current supplied to the MR damper system, many existing controllers are found not well-structured in terms of calculating the optimum value of the controller parameter. Poor control design using the conventional method will cause the output current obtained for the MR damper to be unpredictable. To overcome this problem, an intelligent optimization method known as firefly algorithm (FA) was used by this study to optimize the force tracking controller (FTC) parameters as to achieve the exact damping force of MR damper system. The MR damper was first developed using Spencer model and the required voltage input was then provided by the FTC. The controller parameters were tuned using intelligent FA method in order to find the optimum values which would identify the accuracy of the force tracking that followed the MR damping force. The simulation shows that the FTC with FA technique is able to track the desired force better than the heuristic method up to 1.71 % error considering a given desired input force. 2020-10-13 Proceeding PeerReviewed text en http://ir.unimas.my/id/eprint/33087/1/Intelligent%20Optimization%20of%20Force%20Tracking%20Parameters%20for%20MR%20Damper%20Modelling%20using%20Firefly%20Algorithm_pdf.pdf Mat Hussin, Ab Talib and Hanim, Mohd Yatim and Nik Mohd Ridzuan, Shaharuddin and Muhamad Sukri, Hadi and Intan Zaurah, Mat Darus and Annisa, Jamali (2020) Intelligent Optimization of Force Tracking Parameters for MR Damper Modelling using Firefly Algorithm. In: 2nd International Conference on Applied Engineering (ICAE 2019), 2-3 Oct 2019, Polibatam, Batam Indonesia. https://ieeexplore.ieee.org/document/9221705
institution Universiti Malaysia Sarawak
building Centre for Academic Information Services (CAIS)
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Sarawak
content_source UNIMAS Institutional Repository
url_provider http://ir.unimas.my/
language English
topic T Technology (General)
TJ Mechanical engineering and machinery
spellingShingle T Technology (General)
TJ Mechanical engineering and machinery
Mat Hussin, Ab Talib
Hanim, Mohd Yatim
Nik Mohd Ridzuan, Shaharuddin
Muhamad Sukri, Hadi
Intan Zaurah, Mat Darus
Annisa, Jamali
Intelligent Optimization of Force Tracking Parameters for MR Damper Modelling using Firefly Algorithm
description Magnetorheological (MR) damper system is commonly used to replace the conventional damper in the suspension system due to its low power consumption, fast time response and simple structure. Since inner loop controller is very important in defining the amount of current supplied to the MR damper system, many existing controllers are found not well-structured in terms of calculating the optimum value of the controller parameter. Poor control design using the conventional method will cause the output current obtained for the MR damper to be unpredictable. To overcome this problem, an intelligent optimization method known as firefly algorithm (FA) was used by this study to optimize the force tracking controller (FTC) parameters as to achieve the exact damping force of MR damper system. The MR damper was first developed using Spencer model and the required voltage input was then provided by the FTC. The controller parameters were tuned using intelligent FA method in order to find the optimum values which would identify the accuracy of the force tracking that followed the MR damping force. The simulation shows that the FTC with FA technique is able to track the desired force better than the heuristic method up to 1.71 % error considering a given desired input force.
format Proceeding
author Mat Hussin, Ab Talib
Hanim, Mohd Yatim
Nik Mohd Ridzuan, Shaharuddin
Muhamad Sukri, Hadi
Intan Zaurah, Mat Darus
Annisa, Jamali
author_facet Mat Hussin, Ab Talib
Hanim, Mohd Yatim
Nik Mohd Ridzuan, Shaharuddin
Muhamad Sukri, Hadi
Intan Zaurah, Mat Darus
Annisa, Jamali
author_sort Mat Hussin, Ab Talib
title Intelligent Optimization of Force Tracking Parameters for MR Damper Modelling using Firefly Algorithm
title_short Intelligent Optimization of Force Tracking Parameters for MR Damper Modelling using Firefly Algorithm
title_full Intelligent Optimization of Force Tracking Parameters for MR Damper Modelling using Firefly Algorithm
title_fullStr Intelligent Optimization of Force Tracking Parameters for MR Damper Modelling using Firefly Algorithm
title_full_unstemmed Intelligent Optimization of Force Tracking Parameters for MR Damper Modelling using Firefly Algorithm
title_sort intelligent optimization of force tracking parameters for mr damper modelling using firefly algorithm
publishDate 2020
url http://ir.unimas.my/id/eprint/33087/1/Intelligent%20Optimization%20of%20Force%20Tracking%20Parameters%20for%20MR%20Damper%20Modelling%20using%20Firefly%20Algorithm_pdf.pdf
http://ir.unimas.my/id/eprint/33087/
https://ieeexplore.ieee.org/document/9221705
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score 13.160551