• CN:11-2187/TH
  • ISSN:0577-6686

›› 2010, Vol. 46 ›› Issue (8): 167-174.

• 论文 • 上一篇    下一篇

新型永磁偏置轴向磁轴承的磁力特性

刘虎;房建成   

  1. 北京航空航天大学仪器科学与光电工程学院;北京航空航天大学新型惯性仪表与导航系统技术国防重点学科实验室
  • 发布日期:2010-04-20

Magnetic Force Characteristics of A Novel Permanent Magnet Biased Axial Magnetic Bearing

LIU Hu;FANG Jiancheng   

  1. School of Instrument Science and Opto-electronics Engineering, Beihang University Novel Inertial Instrument & Navigation System Technology Key Laboratory of Fundamental Science for National Defense, Beihang University
  • Published:2010-04-20

摘要: 研究一种集成转子径向扭转与轴向平动控制功能的新型永磁偏置轴向磁轴承的磁力特性,以解决磁轴承系统的轴向尺寸和精度之间的矛盾。采用等效磁路法进行磁轴承的磁路建模,在建立磁极气隙表达式的基础上采用积分型方法进行磁阻计算以提高计算精度,并根据磁路模型给出磁轴承磁力的积分型计算公式,得到轴向磁轴承闭环系统的磁力特性曲线。对某飞轮用磁轴承系统的分析表明:磁轴承磁力与磁极气隙和控制电流间具有良好的线性关系,且各控制通道近似解耦,与典型磁轴承结构相比,利于磁轴承系统控制精度的提高和轴向尺寸的减小,适用于磁悬浮飞轮系统。

关键词: 磁力特性, 等效磁路, 积分型方法, 永磁偏置, 轴向磁轴承

Abstract: To solve the contradiction between axial dimension and precision of magnetic bearing system, the magnetic force characteristics of a novel permanent magnet biased axial magnetic bearing which integrates rotor radial torsion with axial translation control function is researched. Equivalent magnetic circuit method is used to carry out modeling of magnetic circuit of magnetic bearing. Integral calculation formula of magnetic force of magnetic bearing is given on the basis of the magnetic circuit model, the magnetic force characteristic curve of the closed-loop system of magnetic bearing is obtained. The analysis on the magnetic bearing used on a flywheel shows that there exists good relationship between the magnetic force of magnetic bearing and the magnetic pole air gap and control current, and all the control channels are approximately decoupled. Compared to the typical magnetic bearing structure, the proposed one helps to improve the control accuracy and reduce the axial dimension of the magnetic bearing system. It is suitable for magnetic suspension flywheel system.

Key words: Axial magnetic bearing, Equivalent magnetic circuit, Integral method, Magnetic force characteristic, Permanent magnet bias

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