Multifrequency-controlled synchronization of three eccentric rotors driven by induction motors in the same direction

This article presents the dynamic model of three eccentric rotors driven by induction motors and respectively derives the response equations of the three directions with different frequency in a vibrating system. On account of the difficulty to realize multifrequency self-synchronization, the contro...

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Main Authors: Lei Jia, Juqian Zhang, Laihong Zhou, Bangchun Wen
Format: Article
Language:English
Published: SAGE Publishing 2019-06-01
Series:Journal of Low Frequency Noise, Vibration and Active Control
Online Access:https://doi.org/10.1177/1461348418818734
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author Lei Jia
Juqian Zhang
Laihong Zhou
Bangchun Wen
author_facet Lei Jia
Juqian Zhang
Laihong Zhou
Bangchun Wen
author_sort Lei Jia
collection DOAJ
description This article presents the dynamic model of three eccentric rotors driven by induction motors and respectively derives the response equations of the three directions with different frequency in a vibrating system. On account of the difficulty to realize multifrequency self-synchronization, the controlling method is used to realize the synchronization of the speed and phase. In this article, the fuzzy PID method is introduced to control the vibrating system which is based on a master–slave controlling strategy. And a tracking method based on the phase ratio is proposed. The effectiveness and stability are shown in the numerical simulation and the experiment validation is given to certify the accuracy of the theory. In the meanwhile, the arbitrary of the multifrequency is also demonstrated. Finally, some conclusions are summarized to present the significant in the engineering.
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2048-4046
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spelling doaj.art-86c381303ec14dc18d31f53dacd18cd52022-12-22T01:18:38ZengSAGE PublishingJournal of Low Frequency Noise, Vibration and Active Control1461-34842048-40462019-06-013810.1177/1461348418818734Multifrequency-controlled synchronization of three eccentric rotors driven by induction motors in the same directionLei JiaJuqian ZhangLaihong ZhouBangchun WenThis article presents the dynamic model of three eccentric rotors driven by induction motors and respectively derives the response equations of the three directions with different frequency in a vibrating system. On account of the difficulty to realize multifrequency self-synchronization, the controlling method is used to realize the synchronization of the speed and phase. In this article, the fuzzy PID method is introduced to control the vibrating system which is based on a master–slave controlling strategy. And a tracking method based on the phase ratio is proposed. The effectiveness and stability are shown in the numerical simulation and the experiment validation is given to certify the accuracy of the theory. In the meanwhile, the arbitrary of the multifrequency is also demonstrated. Finally, some conclusions are summarized to present the significant in the engineering.https://doi.org/10.1177/1461348418818734
spellingShingle Lei Jia
Juqian Zhang
Laihong Zhou
Bangchun Wen
Multifrequency-controlled synchronization of three eccentric rotors driven by induction motors in the same direction
Journal of Low Frequency Noise, Vibration and Active Control
title Multifrequency-controlled synchronization of three eccentric rotors driven by induction motors in the same direction
title_full Multifrequency-controlled synchronization of three eccentric rotors driven by induction motors in the same direction
title_fullStr Multifrequency-controlled synchronization of three eccentric rotors driven by induction motors in the same direction
title_full_unstemmed Multifrequency-controlled synchronization of three eccentric rotors driven by induction motors in the same direction
title_short Multifrequency-controlled synchronization of three eccentric rotors driven by induction motors in the same direction
title_sort multifrequency controlled synchronization of three eccentric rotors driven by induction motors in the same direction
url https://doi.org/10.1177/1461348418818734
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AT juqianzhang multifrequencycontrolledsynchronizationofthreeeccentricrotorsdrivenbyinductionmotorsinthesamedirection
AT laihongzhou multifrequencycontrolledsynchronizationofthreeeccentricrotorsdrivenbyinductionmotorsinthesamedirection
AT bangchunwen multifrequencycontrolledsynchronizationofthreeeccentricrotorsdrivenbyinductionmotorsinthesamedirection