Electromechanical coupling vibration characteristics of an AC servomotor-driven translational flexible manipulator
The nonstationary transition status of the motor start-up phase creates great threat against the stable operation of the flexible manipulator system. This article investigates the electromechanical coupling dynamics and vibration response characteristics for a flexible manipulator of an alternating...
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2016-11-01
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Series: | International Journal of Advanced Robotic Systems |
Online Access: | https://doi.org/10.1177/1729881416662792 |
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doaj-d22dda9238b6459fbdc34b0a352461f12020-11-25T03:39:18ZengSAGE PublishingInternational Journal of Advanced Robotic Systems1729-88142016-11-011310.1177/172988141666279210.1177_1729881416662792Electromechanical coupling vibration characteristics of an AC servomotor-driven translational flexible manipulatorJin-yong Ju0Wei Li1Xue-Feng Yang2Yu-Qiao Wang3Yu-Fei Liu4 School of Mechatronic Engineering, China University of Mining and Technology, Xuzhou, China China University of Mining and Technology, Xuzhou, China School of Mechatronic Engineering, China University of Mining and Technology, Xuzhou, China School of Mechatronic Engineering, China University of Mining and Technology, Xuzhou, China School of Mechatronic Engineering, China University of Mining and Technology, Xuzhou, ChinaThe nonstationary transition status of the motor start-up phase creates great threat against the stable operation of the flexible manipulator system. This article investigates the electromechanical coupling dynamics and vibration response characteristics for a flexible manipulator of an alternating current servomotor-driven linear positioning platform with considering the start-up dynamic characteristics of the motor. Based on the constructed global electromechanical coupling effect and the Lagrange–Maxwell equations, the dynamic model of the whole system is established. The electromechanical coupling vibration mechanism of the flexible manipulator is obtained by analyzing the multiphysical process and multiparameter coupling phenomenon of the whole system. The result demonstrates that the nonstationary transition status of the motor initialization phase is mainly manifested during the disturbance of the three-phase stator current. As the speed of the linear positioning platform increases, the current disturbance, arousing the change of the servo driving force of the linear positioning platform, has dominant frequency shift and frequency amplitude decrease. Then, the vibration response of the flexible manipulator is markedly affected and the variation of the high-order modes vibration response is more obvious. The analysis result is significant for improving the dynamic performance of the motor-driven flexible robot manipulator system.https://doi.org/10.1177/1729881416662792 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Jin-yong Ju Wei Li Xue-Feng Yang Yu-Qiao Wang Yu-Fei Liu |
spellingShingle |
Jin-yong Ju Wei Li Xue-Feng Yang Yu-Qiao Wang Yu-Fei Liu Electromechanical coupling vibration characteristics of an AC servomotor-driven translational flexible manipulator International Journal of Advanced Robotic Systems |
author_facet |
Jin-yong Ju Wei Li Xue-Feng Yang Yu-Qiao Wang Yu-Fei Liu |
author_sort |
Jin-yong Ju |
title |
Electromechanical coupling vibration characteristics of an AC servomotor-driven translational flexible manipulator |
title_short |
Electromechanical coupling vibration characteristics of an AC servomotor-driven translational flexible manipulator |
title_full |
Electromechanical coupling vibration characteristics of an AC servomotor-driven translational flexible manipulator |
title_fullStr |
Electromechanical coupling vibration characteristics of an AC servomotor-driven translational flexible manipulator |
title_full_unstemmed |
Electromechanical coupling vibration characteristics of an AC servomotor-driven translational flexible manipulator |
title_sort |
electromechanical coupling vibration characteristics of an ac servomotor-driven translational flexible manipulator |
publisher |
SAGE Publishing |
series |
International Journal of Advanced Robotic Systems |
issn |
1729-8814 |
publishDate |
2016-11-01 |
description |
The nonstationary transition status of the motor start-up phase creates great threat against the stable operation of the flexible manipulator system. This article investigates the electromechanical coupling dynamics and vibration response characteristics for a flexible manipulator of an alternating current servomotor-driven linear positioning platform with considering the start-up dynamic characteristics of the motor. Based on the constructed global electromechanical coupling effect and the Lagrange–Maxwell equations, the dynamic model of the whole system is established. The electromechanical coupling vibration mechanism of the flexible manipulator is obtained by analyzing the multiphysical process and multiparameter coupling phenomenon of the whole system. The result demonstrates that the nonstationary transition status of the motor initialization phase is mainly manifested during the disturbance of the three-phase stator current. As the speed of the linear positioning platform increases, the current disturbance, arousing the change of the servo driving force of the linear positioning platform, has dominant frequency shift and frequency amplitude decrease. Then, the vibration response of the flexible manipulator is markedly affected and the variation of the high-order modes vibration response is more obvious. The analysis result is significant for improving the dynamic performance of the motor-driven flexible robot manipulator system. |
url |
https://doi.org/10.1177/1729881416662792 |
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