Optimal placement of actuator for vibration suppression based on intelligent PID controller

Many attempts have been proposed by the previous researchers due to reduce the undesired vibration by considering several control strategies. The simplest way in reducing the vibration is to build more rigid structure so that less vibration will be produced. Nevertheless, this strategy is usually no...

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Main Authors: Muhamad Sukri, Hadi, Nadzirah, Mohd Mokhtar, Intan Zaurah, Mat Darus
Format: Conference or Workshop Item
Language:English
English
Published: Institute of Electrical and Electronics Engineers Inc. 2020
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/42447/1/Optimal%20placement%20of%20actuator%20for%20vibration%20suppression%20based%20on.pdf
http://umpir.ump.edu.my/id/eprint/42447/2/Optimal%20placement%20of%20actuator%20for%20vibration%20suppression%20based%20on%20intelligent%20PID%20controller_ABS.pdf
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author Muhamad Sukri, Hadi
Nadzirah, Mohd Mokhtar
Intan Zaurah, Mat Darus
author_facet Muhamad Sukri, Hadi
Nadzirah, Mohd Mokhtar
Intan Zaurah, Mat Darus
author_sort Muhamad Sukri, Hadi
collection UMP
description Many attempts have been proposed by the previous researchers due to reduce the undesired vibration by considering several control strategies. The simplest way in reducing the vibration is to build more rigid structure so that less vibration will be produced. Nevertheless, this strategy is usually not applicable since the structures are need high power consumption and limitation in operation speed. Furthermore, it becomes a growing trend among the industries to use light weight of mechanical structure known as flexible plate. However, the critical problem faced by the industries is vibration on the structure that can lead to structural damage. Hence, this research presents the optimal placement of actuator and sensor on the experimental rig for vibration cancelation of the flexible plate structure based on intelligent PID controller. The PID controller tuned by artificial bee colony (ABC) algorithm was used to control the undesired vibration on the structure. The robustness of developed controller was validated by varying the position of actuator on the experimental rig. It was indicated that point A2 leads to the good attenuation level by achieving highest attenuation value at the first mode of vibration with 28.83 dB which is equivalent to 21.62 % attenuation, after the introduction of vibration control.
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spelling UMPir424472024-12-02T01:13:07Z http://umpir.ump.edu.my/id/eprint/42447/ Optimal placement of actuator for vibration suppression based on intelligent PID controller Muhamad Sukri, Hadi Nadzirah, Mohd Mokhtar Intan Zaurah, Mat Darus T Technology (General) TA Engineering (General). Civil engineering (General) Many attempts have been proposed by the previous researchers due to reduce the undesired vibration by considering several control strategies. The simplest way in reducing the vibration is to build more rigid structure so that less vibration will be produced. Nevertheless, this strategy is usually not applicable since the structures are need high power consumption and limitation in operation speed. Furthermore, it becomes a growing trend among the industries to use light weight of mechanical structure known as flexible plate. However, the critical problem faced by the industries is vibration on the structure that can lead to structural damage. Hence, this research presents the optimal placement of actuator and sensor on the experimental rig for vibration cancelation of the flexible plate structure based on intelligent PID controller. The PID controller tuned by artificial bee colony (ABC) algorithm was used to control the undesired vibration on the structure. The robustness of developed controller was validated by varying the position of actuator on the experimental rig. It was indicated that point A2 leads to the good attenuation level by achieving highest attenuation value at the first mode of vibration with 28.83 dB which is equivalent to 21.62 % attenuation, after the introduction of vibration control. Institute of Electrical and Electronics Engineers Inc. 2020-09-07 Conference or Workshop Item PeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/42447/1/Optimal%20placement%20of%20actuator%20for%20vibration%20suppression%20based%20on.pdf pdf en http://umpir.ump.edu.my/id/eprint/42447/2/Optimal%20placement%20of%20actuator%20for%20vibration%20suppression%20based%20on%20intelligent%20PID%20controller_ABS.pdf Muhamad Sukri, Hadi and Nadzirah, Mohd Mokhtar and Intan Zaurah, Mat Darus (2020) Optimal placement of actuator for vibration suppression based on intelligent PID controller. In: 2020 IEEE 4th International Conference on Intelligent Energy and Power Systems, IEPS 2020 - Proceedings. 4th IEEE International Conference on Intelligent Energy and Power Systems, IEPS 2020 , 7 - 11 September 2020 , Istanbul. pp. 237-241. (9263178). ISBN 978-073810568-0 (Published) https://doi.org/10.1109/IEPS51250.2020.9263178
spellingShingle T Technology (General)
TA Engineering (General). Civil engineering (General)
Muhamad Sukri, Hadi
Nadzirah, Mohd Mokhtar
Intan Zaurah, Mat Darus
Optimal placement of actuator for vibration suppression based on intelligent PID controller
title Optimal placement of actuator for vibration suppression based on intelligent PID controller
title_full Optimal placement of actuator for vibration suppression based on intelligent PID controller
title_fullStr Optimal placement of actuator for vibration suppression based on intelligent PID controller
title_full_unstemmed Optimal placement of actuator for vibration suppression based on intelligent PID controller
title_short Optimal placement of actuator for vibration suppression based on intelligent PID controller
title_sort optimal placement of actuator for vibration suppression based on intelligent pid controller
topic T Technology (General)
TA Engineering (General). Civil engineering (General)
url http://umpir.ump.edu.my/id/eprint/42447/1/Optimal%20placement%20of%20actuator%20for%20vibration%20suppression%20based%20on.pdf
http://umpir.ump.edu.my/id/eprint/42447/2/Optimal%20placement%20of%20actuator%20for%20vibration%20suppression%20based%20on%20intelligent%20PID%20controller_ABS.pdf
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AT nadzirahmohdmokhtar optimalplacementofactuatorforvibrationsuppressionbasedonintelligentpidcontroller
AT intanzaurahmatdarus optimalplacementofactuatorforvibrationsuppressionbasedonintelligentpidcontroller