Development of multi-input multi-output virtual tuned mass damper controls for the vibration suppression of structures

This study is concerned with the development of multi-input multi-output control algorithms for the active vibration suppression of structures using accelerometer signals and force-type actuators. The concept of the single-input single-output virtual tuned mass damper control algorithm developed in...

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Main Authors: Soo-Min Kim, Moon K Kwak, Taek Soo Chung, Ki-Seok Song
Format: Article
Language:English
Published: SAGE Publishing 2022-06-01
Series:Journal of Low Frequency Noise, Vibration and Active Control
Online Access:https://doi.org/10.1177/14613484211068945
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author Soo-Min Kim
Moon K Kwak
Taek Soo Chung
Ki-Seok Song
author_facet Soo-Min Kim
Moon K Kwak
Taek Soo Chung
Ki-Seok Song
author_sort Soo-Min Kim
collection DOAJ
description This study is concerned with the development of multi-input multi-output control algorithms for the active vibration suppression of structures using accelerometer signals and force-type actuators. The concept of the single-input single-output virtual tuned mass damper control algorithm developed in the previous study was extended to cope with multiple natural modes of structure equipped with a limited number of sensors and actuators. Two control algorithms were developed based on the assumption of collocated control. One is the decentralized virtual tuned mass damper control that produces the actuator signal using only the accelerometer signal of that actuator position. The other is the centralized virtual tuned mass damper control that is designed in modal-space, and produces the modal control force using the modal coordinate. Both the theoretical and experimental results show that the proposed control algorithms are effective in suppressing multiple natural modes with a lesser number of sensors and actuators. However, the decentralized virtual tuned mass damper control can be designed and implemented more easily than the centralized virtual tuned mass damper control.
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spelling doaj.art-2cd998f049d444a696d1778e9c03c9642022-12-22T02:20:32ZengSAGE PublishingJournal of Low Frequency Noise, Vibration and Active Control1461-34842048-40462022-06-014110.1177/14613484211068945Development of multi-input multi-output virtual tuned mass damper controls for the vibration suppression of structuresSoo-Min KimMoon K KwakTaek Soo ChungKi-Seok SongThis study is concerned with the development of multi-input multi-output control algorithms for the active vibration suppression of structures using accelerometer signals and force-type actuators. The concept of the single-input single-output virtual tuned mass damper control algorithm developed in the previous study was extended to cope with multiple natural modes of structure equipped with a limited number of sensors and actuators. Two control algorithms were developed based on the assumption of collocated control. One is the decentralized virtual tuned mass damper control that produces the actuator signal using only the accelerometer signal of that actuator position. The other is the centralized virtual tuned mass damper control that is designed in modal-space, and produces the modal control force using the modal coordinate. Both the theoretical and experimental results show that the proposed control algorithms are effective in suppressing multiple natural modes with a lesser number of sensors and actuators. However, the decentralized virtual tuned mass damper control can be designed and implemented more easily than the centralized virtual tuned mass damper control.https://doi.org/10.1177/14613484211068945
spellingShingle Soo-Min Kim
Moon K Kwak
Taek Soo Chung
Ki-Seok Song
Development of multi-input multi-output virtual tuned mass damper controls for the vibration suppression of structures
Journal of Low Frequency Noise, Vibration and Active Control
title Development of multi-input multi-output virtual tuned mass damper controls for the vibration suppression of structures
title_full Development of multi-input multi-output virtual tuned mass damper controls for the vibration suppression of structures
title_fullStr Development of multi-input multi-output virtual tuned mass damper controls for the vibration suppression of structures
title_full_unstemmed Development of multi-input multi-output virtual tuned mass damper controls for the vibration suppression of structures
title_short Development of multi-input multi-output virtual tuned mass damper controls for the vibration suppression of structures
title_sort development of multi input multi output virtual tuned mass damper controls for the vibration suppression of structures
url https://doi.org/10.1177/14613484211068945
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