PID controller based on flower pollination algorithm of flexible beam system

Flexible beam is commonly used in a wide variety of engineering applications such as mechanical, aircraft and architecture. One of the advantages of these flexible structures is its lighter as compared to rigid structures. However, flexible structures are more sensitive to vibration compared to rigi...

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Main Authors: Mohd. Fadzli, Ali Akhbar, Hadi, Muhamad Sukri, Ting, Rickey Pek Eek, Ab. Talib, Mat Hussin, Mohd. Yatim, Hanim, Mat Darus, Intan Zaurah
Format: Book Section
Published: Springer Science and Business Media Deutschland GmbH 2022
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Online Access:http://eprints.utm.my/id/eprint/100529/
http://dx.doi.org/10.1007/978-981-33-4597-3_17
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spelling my.utm.1005292023-04-14T02:47:51Z http://eprints.utm.my/id/eprint/100529/ PID controller based on flower pollination algorithm of flexible beam system Mohd. Fadzli, Ali Akhbar Hadi, Muhamad Sukri Ting, Rickey Pek Eek Ab. Talib, Mat Hussin Mohd. Yatim, Hanim Mat Darus, Intan Zaurah TJ Mechanical engineering and machinery Flexible beam is commonly used in a wide variety of engineering applications such as mechanical, aircraft and architecture. One of the advantages of these flexible structures is its lighter as compared to rigid structures. However, flexible structures are more sensitive to vibration compared to rigid structures. Excessive long term vibration can damage parts and reduce the performance of such structures. Therefore, a suitable system should be identified to overcome the problem. In the new era of technology, there are many methods developed to suppress unwanted vibration. One well-known system to suppress unwanted vibration is active vibration control (AVC). This system is suitable for structures experiencing low frequency of vibration. A proper modelling must be developed using system identification techniques in order to achieve high vibration cancellation in the system. For system identification, evolutionary swarm algorithm is the latest technique used compared to other methods. In this study, flower pollination algorithms (FPA) was used to develop a mathematical model of a system. The main objective of this study was to develop a model for flexible beam system using FPA in order to achieve an approximate model that represents the real characteristic of the flexible beam system. The developed model will then be used as a platform for PID controller development. The model was validated using three robustness methods, which are the mean squared error (MSE), correlation test, and pole zero diagram stability. Based on the validation, it was observed that the FPA was able to exhibit the lowest MSE value, very good correlation test and high stability. The model achieved in this study was used in controller development for vibration cancellation of a flexible beam system. It was noticed that the PID controller achieved 17.7 dB of attenuation level at the first mode of vibration. The attenuation of vibration was reduced from 56.72 to 39.03 dB, which is equivalent to 31.2% of reduction when the vibration control is active. Springer Science and Business Media Deutschland GmbH 2022 Book Section PeerReviewed Mohd. Fadzli, Ali Akhbar and Hadi, Muhamad Sukri and Ting, Rickey Pek Eek and Ab. Talib, Mat Hussin and Mohd. Yatim, Hanim and Mat Darus, Intan Zaurah (2022) PID controller based on flower pollination algorithm of flexible beam system. 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. 173-183. ISBN 978-981334596-6 http://dx.doi.org/10.1007/978-981-33-4597-3_17 DOI:10.1007/978-981-33-4597-3_17
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
Mohd. Fadzli, Ali Akhbar
Hadi, Muhamad Sukri
Ting, Rickey Pek Eek
Ab. Talib, Mat Hussin
Mohd. Yatim, Hanim
Mat Darus, Intan Zaurah
PID controller based on flower pollination algorithm of flexible beam system
description Flexible beam is commonly used in a wide variety of engineering applications such as mechanical, aircraft and architecture. One of the advantages of these flexible structures is its lighter as compared to rigid structures. However, flexible structures are more sensitive to vibration compared to rigid structures. Excessive long term vibration can damage parts and reduce the performance of such structures. Therefore, a suitable system should be identified to overcome the problem. In the new era of technology, there are many methods developed to suppress unwanted vibration. One well-known system to suppress unwanted vibration is active vibration control (AVC). This system is suitable for structures experiencing low frequency of vibration. A proper modelling must be developed using system identification techniques in order to achieve high vibration cancellation in the system. For system identification, evolutionary swarm algorithm is the latest technique used compared to other methods. In this study, flower pollination algorithms (FPA) was used to develop a mathematical model of a system. The main objective of this study was to develop a model for flexible beam system using FPA in order to achieve an approximate model that represents the real characteristic of the flexible beam system. The developed model will then be used as a platform for PID controller development. The model was validated using three robustness methods, which are the mean squared error (MSE), correlation test, and pole zero diagram stability. Based on the validation, it was observed that the FPA was able to exhibit the lowest MSE value, very good correlation test and high stability. The model achieved in this study was used in controller development for vibration cancellation of a flexible beam system. It was noticed that the PID controller achieved 17.7 dB of attenuation level at the first mode of vibration. The attenuation of vibration was reduced from 56.72 to 39.03 dB, which is equivalent to 31.2% of reduction when the vibration control is active.
format Book Section
author Mohd. Fadzli, Ali Akhbar
Hadi, Muhamad Sukri
Ting, Rickey Pek Eek
Ab. Talib, Mat Hussin
Mohd. Yatim, Hanim
Mat Darus, Intan Zaurah
author_facet Mohd. Fadzli, Ali Akhbar
Hadi, Muhamad Sukri
Ting, Rickey Pek Eek
Ab. Talib, Mat Hussin
Mohd. Yatim, Hanim
Mat Darus, Intan Zaurah
author_sort Mohd. Fadzli, Ali Akhbar
title PID controller based on flower pollination algorithm of flexible beam system
title_short PID controller based on flower pollination algorithm of flexible beam system
title_full PID controller based on flower pollination algorithm of flexible beam system
title_fullStr PID controller based on flower pollination algorithm of flexible beam system
title_full_unstemmed PID controller based on flower pollination algorithm of flexible beam system
title_sort pid controller based on flower pollination algorithm of flexible beam system
publisher Springer Science and Business Media Deutschland GmbH
publishDate 2022
url http://eprints.utm.my/id/eprint/100529/
http://dx.doi.org/10.1007/978-981-33-4597-3_17
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score 13.160551