Self-Powered Active Vibration Control: Concept, Modeling, and Testing

Despite their superior control performance, active vibration control techniques cannot be widely used in some engineering fields because of their substantial power demand in controlling large-scale structures. As an innovative solution to this problem, an unprecedented self-powered active vibration...

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Main Authors: Jin-Yang Li, Songye Zhu
Format: Article
Language:English
Published: Elsevier 2022-04-01
Series:Engineering
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2095809921002654
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author Jin-Yang Li
Songye Zhu
author_facet Jin-Yang Li
Songye Zhu
author_sort Jin-Yang Li
collection DOAJ
description Despite their superior control performance, active vibration control techniques cannot be widely used in some engineering fields because of their substantial power demand in controlling large-scale structures. As an innovative solution to this problem, an unprecedented self-powered active vibration control system was developped in this study. The topological design, working mechanism, and power flow of the proposed system are presented herein. The self-powering ability of the system was confirmed based on a detailed power flow analysis of vibration control processes. A self-powered actively controlled actuator was designed and applied to a scaled active vibration isolation table. The feasibility and effectiveness of the innovative system were successfully validated through a series of analytical, numerical, and experimental investigations. The setup and control strategy of the proposed system can be readily extended to diversified active vibration control applications in various engineering fields.
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spelling doaj.art-8f35b5492d1e46c3bc5379e918cf55eb2022-12-22T00:35:50ZengElsevierEngineering2095-80992022-04-0111126137Self-Powered Active Vibration Control: Concept, Modeling, and TestingJin-Yang Li0Songye Zhu1Department of Civil and Environmental Engineering, The Hong Kong Polytechnic University, Hong Kong 999077, ChinaDepartment of Civil and Environmental Engineering, The Hong Kong Polytechnic University, Hong Kong 999077, China; National Rail Transit Electrification and Automation Engineering Technology Research Center (Hong Kong Branch), The Hong Kong Polytechnic University, Hong Kong 999077, China; Corresponding author.Despite their superior control performance, active vibration control techniques cannot be widely used in some engineering fields because of their substantial power demand in controlling large-scale structures. As an innovative solution to this problem, an unprecedented self-powered active vibration control system was developped in this study. The topological design, working mechanism, and power flow of the proposed system are presented herein. The self-powering ability of the system was confirmed based on a detailed power flow analysis of vibration control processes. A self-powered actively controlled actuator was designed and applied to a scaled active vibration isolation table. The feasibility and effectiveness of the innovative system were successfully validated through a series of analytical, numerical, and experimental investigations. The setup and control strategy of the proposed system can be readily extended to diversified active vibration control applications in various engineering fields.http://www.sciencedirect.com/science/article/pii/S2095809921002654Self-powered active vibration controlEnergy harvestingSkyhook controlPower equilibriumSmart control
spellingShingle Jin-Yang Li
Songye Zhu
Self-Powered Active Vibration Control: Concept, Modeling, and Testing
Engineering
Self-powered active vibration control
Energy harvesting
Skyhook control
Power equilibrium
Smart control
title Self-Powered Active Vibration Control: Concept, Modeling, and Testing
title_full Self-Powered Active Vibration Control: Concept, Modeling, and Testing
title_fullStr Self-Powered Active Vibration Control: Concept, Modeling, and Testing
title_full_unstemmed Self-Powered Active Vibration Control: Concept, Modeling, and Testing
title_short Self-Powered Active Vibration Control: Concept, Modeling, and Testing
title_sort self powered active vibration control concept modeling and testing
topic Self-powered active vibration control
Energy harvesting
Skyhook control
Power equilibrium
Smart control
url http://www.sciencedirect.com/science/article/pii/S2095809921002654
work_keys_str_mv AT jinyangli selfpoweredactivevibrationcontrolconceptmodelingandtesting
AT songyezhu selfpoweredactivevibrationcontrolconceptmodelingandtesting