Abstract
According to different working environments and functional requirements, radial magnetic bearings (RMBs) have various design methods. Some methods’ lack of effectiveness or accuracy is likely to cause significant differences in the structural performance of magnetic bearings, which will cause serious problems such as limited bearing capacity and complex control. This paper analyzes the structure topology of a magnetic bearing according to the application scenario of RMBs, then proposes a general design example of an 8-pole magnetic bearing based on magnetic circuit analysis and reveals the linearity between electromagnetic force and current as well as air gap through finite element analysis and the influence of magnetic saturation on the load capacity of the magnetic bearing structure. After completing the preliminary design, we further optimize the structure, take the genetic algorithm as an example to iterate the influence coefficient, and summarize and prospect. The design scheme and optimization method proposed in this paper only provide a valuable reference for researchers and factories when devising RMB devices.
Funder
National Key Research and Development Project of China
Subject
Control and Optimization,Control and Systems Engineering
Reference44 articles.
1. Application of active magnetic bearings in flexible rotordynamic systems—A state-of-the-art review;Srinivas;Mech. Syst. Signal Process.,2018
2. A Novel Homopolar Four Degrees of Freedom Hybrid Magnetic Bearing;Ye;IEEE Trans. Magn.,2020
3. Huang, T., Min, Z., and Guangfeng, Z. (2019, January 3–5). A review of active magnetic bearing control technology. Proceedings of the 2019 Chinese Control and Decision Conference (CCDC), Nanchang, China.
4. Suspension Force Analysis of Four-Pole Hybrid Magnetic Bearing with Large Radial Bearing Capacity;Wang;IEEE Trans. Magn.,2020
5. Tshizubu, C., and Santisteban, J.A. (2017, January 28–31). A simple PID controller for a magnetic bearing with four poles and interconnected magnetic flux. Proceedings of the 2017 6th International Symposium on Advanced Control of Industrial Processes (AdCONIP), Taipei, Taiwan.
Cited by
6 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献