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磁悬浮分子泵中径向主动磁轴承的动态刚度分析与测量

Dynamic Stiffness Analysis and Measurement of Radial Active Magnetic Bearing in Magnetically Suspended Molecular Pump.

作者信息

Sun Jinji, Zhou Han, Ju Ziyan

机构信息

Beihang University, School of Instrumentation and Opto-electronics Engineering, Beijing, 100191, China.

出版信息

Sci Rep. 2020 Jan 29;10(1):1401. doi: 10.1038/s41598-020-57523-8.

Abstract

Current stiffness and displacement stiffness are two important parameters of radial active magnetic bearing (RAMB) that are generally considered as constants in a control system. However, such presumption may lead to the probable degradation of the control performance of the RAMB system when the perspective that the current and displacement stiffness should be variable due to variations in the speed. On this regard, a structure analysis and stiffness measurement method based on non-variable stiffness would not be feasible for RAMB under high-speed conditions. This paper presented an analysis of the dynamic stiffness characteristics of RAMB by means of a dynamic equivalent magnetic circuit method and laid out a comparison between the results of the theoretical analysis and the simulation results of finite element method. In particular, a novel dynamic stiffness measurement method of RAMB under high-rotation frequency was introduced. Results of experiments on the dynamic stiffness of RAMB demonstrated an excellent agreement with the theoretical research and the finite element analysis results, thereby verifying the rationality of the discussed dynamic stiffness characteristics. Practically, the proposed measurement method of RAMB dynamic stiffness provides an accurate analysis for the dynamic stiffness and contributes inspiring research significance for the dynamic properties of RAMB.

摘要

电流刚度和位移刚度是径向主动磁轴承(RAMB)的两个重要参数,在控制系统中通常被视为常数。然而,当考虑到由于转速变化电流刚度和位移刚度应是可变的这一观点时,这种假设可能会导致RAMB系统控制性能的可能下降。在这方面,基于非可变刚度的结构分析和刚度测量方法对于高速条件下的RAMB是不可行的。本文通过动态等效磁路法对RAMB的动态刚度特性进行了分析,并对理论分析结果与有限元法的仿真结果进行了比较。特别地,介绍了一种在高旋转频率下RAMB的新型动态刚度测量方法。RAMB动态刚度的实验结果与理论研究和有限元分析结果高度吻合,从而验证了所讨论的动态刚度特性的合理性。实际上,所提出的RAMB动态刚度测量方法为动态刚度提供了准确的分析,并对RAMB的动态特性具有启发性的研究意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7569/6989454/95dc839b3e29/41598_2020_57523_Fig1_HTML.jpg

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