Affiliation of Author(s):自动化学院
Journal:IET Electr Power Appl
Abstract:A magnetically suspended rotor (MSR) system always suffers from the non-coincidence of the inertia axis and geometric axis, which results in synchronous vibration varied with the rotational speed. To effectively suppress the synchronous vibration torques for the MSR with significant gyroscopic effects, a consolidated vibration control and stability analysis method is proposed here. The MSR system with inherent gyroscopic effects belongs to a class of cross-coupled antisymmetric system. First, a class of cross-coupled antisymmetric system with synchronous vibration influence is modelled. Then, the principle and implementation of the proposed scheme used for synchronous vibration suppression are analysed in detail. Moreover, a stability analysis method for a class of cross-coupled antisymmetric system is developed, which is not limited to the specific MSR system with gyroscopic effects. Finally, the simulation and experiments are performed in the typical magnetically suspended flywheel to demonstrate the effectiveness of the proposed stability analysis method and the vibration suppression algorithm. © The Institution of Engineering and Technology 2019
ISSN No.:1751-8660
Translation or Not:no
Date of Publication:2019-08-01
Co-author:Zhu, Mengting,Ren, Xiaojun,zzy
Correspondence Author:彭聪,Peng Cong
Professor
Supervisor of Doctorate Candidates
Gender:Female
Alma Mater:北京航空航天大学
Education Level:北京航空航天大学
Degree:Doctoral Degree in Engineering
School/Department:College of Automation Engineering
Discipline:Guidance, Navigation, and Control. Control Science and Engineering
Contact Information:pengcong@nuaa.edu.cn
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