Comparative analysis of energy performance of squirrel cage induction motor, line-start synchronous reluctance and permanent magnet motors employing the same stator design

IF 1.2 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC Archives of Electrical Engineering Pub Date : 2023-04-03 DOI:10.24425/AEE.2020.134642
W. Łyskawiński
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引用次数: 3

Abstract

: The paper presents research on the development of a line-start synchronous reluctance motor (LSSynRM) and line-start permanent magnet synchronous motor (LSPMSM) based on components of a mass-produced three-phase low-power squirrel cage induction motor (IM). The aim of the research was to modify the squirrel cage rotor structure for which the best functional parameters characterizing the steady state of the LSSynRM and LSPMSM were obtained, while meeting the additional requirements for asynchronous start-up. Field-circuit models of the LSSynRM and LSPMSM have been developed in the professional finite element method (FEM) package, MagNet, and applied in the design and optimization calculations of the considered machines. Experimental testing on the designed LSSynRM and LSPMSM prototypes were carried out. The obtained results were compared with the performance of the reference IM. The conclusions resulting from the comparative analysis of these three motors are given and proposals for further work are discussed.
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采用相同定子设计的鼠笼式感应电动机、起动同步磁阻电动机和永磁电动机的能量性能比较分析
本文研究了基于已批量生产的三相小功率鼠笼式异步电动机(IM)组件的线路启动同步磁阻电动机(LSSynRM)和线路启动永磁同步电动机(LSPMSM)的开发。研究的目的是对鼠笼式转子结构进行改进,使其在满足异步启动的附加要求的同时,获得表征LSSynRM和LSPMSM稳态的最佳功能参数。在专业的有限元软件包MagNet中建立了LSSynRM和LSPMSM的场路模型,并将其应用于所考虑的机器的设计和优化计算。对设计的LSSynRM和LSPMSM样机进行了实验测试。将所得结果与参考IM的性能进行了比较。对这三种电机进行了比较分析,得出了结论,并对今后的工作提出了建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Archives of Electrical Engineering
Archives of Electrical Engineering ENGINEERING, ELECTRICAL & ELECTRONIC-
CiteScore
2.40
自引率
53.80%
发文量
0
审稿时长
18 weeks
期刊介绍: The journal publishes original papers in the field of electrical engineering which covers, but not limited to, the following scope: - Control - Electrical machines and transformers - Electrical & magnetic fields problems - Electric traction - Electro heat - Fuel cells, micro machines, hybrid vehicles - Nondestructive testing & Nondestructive evaluation - Electrical power engineering - Power electronics
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