| Literature DB >> 24745603 |
Jiqiang Tang1, Biao Xiang2, Yongbin Zhang1.
Abstract
For a magnetically suspended control moment gyroscope, stiffness and damping of magnetic bearing will influence modal frequency of a rotor. In this paper the relationship between modal frequency and stiffness and damping has been investigated. The mathematic calculation model of axial passive magnetic bearing (PMB) stiffness is developed. And PID control based on internal model control is introduced into control of radial active magnetic bearing (AMB), considering the radial coupling of axial PMB, a mathematic calculation model of stiffness and damping of radial AMB is established. According to modal analysis, the relationship between modal frequency and modal shapes is achieved. Radial vibration frequency is mainly influenced by stiffness of radial AMB; however, when stiffness increases, radial vibration will disappear and a high frequency bending modal will appear. Stiffness of axial PMB mainly affects the axial vibration mode, which will turn into high-order bending modal. Axial PMB causes bigger influence on torsion modal of the rotor.Entities:
Keywords: Active magnetic bearing; Damping; Modal; Permanent magnetic bearing; Stiffness
Year: 2014 PMID: 24745603 DOI: 10.1016/j.isatra.2014.03.009
Source DB: PubMed Journal: ISA Trans ISSN: 0019-0578 Impact factor: 5.468