首页> 外文OA文献 >Concentrated Winding Multiphase Permanent Magnet Machine Design and Electromagnetic Properties – Case Axial Flux Machine
【2h】

Concentrated Winding Multiphase Permanent Magnet Machine Design and Electromagnetic Properties – Case Axial Flux Machine

机译:集中绕组多相永磁电机的设计和电磁性能–轴轴向通量机

摘要

Concentrated winding permanent magnet machines and their electromagnetic properties are studied in this doctoral thesis. The thesis includes a number of main tasks related to the application of permanent magnets in concentrated winding open slot machines. Suitable analytical methods are required for the first design calculations of a new machine. Concentrated winding machines differ from conventional integral slot winding machines in such a way that adapted analytical calculation methods are needed. A simple analytical model for calculating the concentrated winding axial flux machines is provided. The next three main design tasks are discussed in more detail in the thesis. The magnetic length of the rotor surface magnet machines is studied, and it is shown that the traditional methods have to be modified also in this respect. An important topic in this study has been to evaluate and minimize the rotor permanent magnet Joule losses by using segmented magnets in the calculations and experiments. Determination of the magnetizing and leakage inductances for a concentrated winding machine and the torque production capability of concentrated winding machines with different pole pair numbers are studied, and the results are compared with the corresponding properties of integral slot winding machines. The thesis introduces a new practical permanent magnet motor type for industrial use. The special features of the machine are based on the option of using concentrated winding open slot constructions of permanent magnet synchronous machines in the normal speed ranges of industrial motors, for instance up to 3000 min-1, without excessive rotor losses. By applying the analytical equations and methods introduced in the thesis, a 37 kW 2400 min-1 12-slot 10-pole axial flux machine with rotor-surfacemounted magnets is designed. The performance of the designed motor is determined by experimental measurements and finite element calculations.
机译:本博士论文研究了集中绕组永磁电机及其电磁性能。论文包括与永磁体在集中绕组开槽机中的应用有关的许多主要任务。新机器的首次设计计算需要合适的分析方法。集中式绕线机与常规的整体式槽式绕线机的不同之处在于,需要适应性的分析计算方法。提供了一种用于计算集中绕组轴向磁通量机器的简单分析模型。本文将详细讨论接下来的三个主要设计任务。研究了转子表面磁电机的磁长度,并且表明传统方法在这方面也必须进行修改。这项研究中的一个重要主题是通过在计算和实验中使用分段磁体来评估和最小化转子永磁体的焦耳损耗。研究了集中绕线机的磁化和漏感的确定以及不同极对数的集中绕线机的转矩产生能力,并将其结果与整体槽式绕线机的相应性能进行了比较。本文介绍了一种新型的工业实用永磁电动机。电机的特殊功能是基于以下选择:在工业电机的正常转速范围内(例如,最高3000 min-1)使用永磁同步电机的集中绕组开槽结构,而不会造成过多的转子损耗。通过应用本文介绍的解析方程和方法,设计了一种37 kW 2400 min-1 12槽10极轴向磁通转子电机。设计的电动机的性能由实验测量和有限元计算确定。

著录项

  • 作者

    Jussila Hanne;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号