关键字
协会热线:029-84276641
            首页微电机期刊
 
  综述
  伺服与控制
  设计与研究
  专题讲座
  检测技术
  工艺技术
  经验交流
  实用技术
  读者园地
  技术交流
  使用与维护
  标准评述
  工艺与装备
  驱动与控制
  应用研究
  测试研究
  精品连载
 
标题:无轴承永磁薄片电机径向悬浮力研究
作者:陈颖,祝苏明,顾迎月,等
2016年第11期 访问次数:290次

摘要:无轴承永磁薄片电机悬浮力数学模型的精确与否直接影响其稳定悬浮运行的性能,因此,建立精确的悬浮力数学模型,是实现其高精度运行控制的前提条件。论文在介绍无轴承永磁薄片电机转子悬浮原理的基础上,推导了转矩绕组和悬浮力绕组在两相静止和两相旋转坐标系下的精确电感模型,并利用此精确电感模型在计及转子偏心的条件下建立了无轴承永磁薄片电机较为完整的径向悬浮力数学模型,最后设计了相应的数字控制系统进行实验研究。实验结果表明:该方法建立的控制系统悬浮力控制精度高,抗干扰能力强,系统具有良好的动、静态性能。
关键词:无轴承永磁薄片电机;径向悬浮力;电感;数学模型;控制系统
Abstract: The accuracy of mathematical modeling of a bearingless permanent magnet slice motor (BPMSM) affects its performance of stable operation directly. Thus, its indispensable for BPMSMs highprecision operation to establish a precise mathematical model of radial suspension force. In this paper, the suspension principle of the BPMSM was introduced, then the accurate inductance models in both 2phase stator coordinates and 2phase rotor synchronous coordinates were deduced. Based on the accurate inductance model and taking rotor eccentricity into account, a complete and precise mathematical model of radial suspension force of the BPMSM was obtained. Finally, the corresponding experimental platform of digital control system was designed, and the experiments were carried out on a 4 kW prototype of BPMSM. The experimental results show that the control system designed by using this method has high control accuracy of suspension force, strong capability of resisting disturbance, and good static and dynamic performance.
Key words: bearingless permanent magnet slice motor (BPMSM); radial suspension force; inductance; mathematical model; control system
 
 
 
    广告服务 |   商务合作 |   使用帮助 |   网站地图 |     主办:中国电器工业协会微电机分会      挂靠:西安微电机研究所有限公司      地址:西安市高新区上林苑四路36号(710117)
   copyright © www.china-micromotor.com.cn all rights reserved.     版权所有:微电机网     陕ICP备05005551号-2
 

西安微电机研究所有限公司公众平台
二维码

《微电机》杂志公众平台二维码