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Finite element analysis of eddy current losses in steel laminations of inverter-fed electrical machines

机译:逆变器供电电机的钢叠片中涡流损耗的有限元分析

摘要

This thesis investigates the eddy currents and regarding losses in electrical steel sheets. For the purpose, two methods of numerical analysis of electromagnetic fields are developed. Both of those are based on the two-dimensional (2-D) finite element computation of the fields. Since the eddy currents of the sheets are, by definition, excluded from the 2-D formulation they need to be included separately. Within this work, the goal is achieved by modeling the eddy currents via a one-dimensional (1-D) penetration equation in association with the 2-D analysis. Formulations for both, general time variation and sinusoidal time variation are shown. The coupling of the 2-D and 1-D models is investigated from several perspectives. For representing the 1-D eddy current solution within the time-discretized analysis two approaches are considered. Numerous simulations carried out reveal that inappropriate coupling might not affect the losses to be obtained but other electromagnetic quantities such as input power or power factor. A proper coupling method that accords with the computation results is proposed. The combining of those two field formulations is discussed in the case of the time-harmonic approach as well, for which the concept of complex reluctivity is employed. The second objective of the work is to study in detail the losses in rotating electrical machines fed by a frequency converter. The higher harmonics associated with the frequency-converter supply are known to increase to losses in comparison with a sinusoidal voltage supply. According to the simulations, (i) the eddy current losses in the rotor sheets are the most sensitive to the distorted input voltage waveforms and (ii) coincidently can be the most reduced by choosing the switching frequency of the frequency converter suitably. The measurements carried out on the test machine and comparative studies of those and the simulation results verify the methods proposed.
机译:本文研究了涡流和电磁钢板的损耗。为此,开发了两种电磁场数值分析方法。两者均基于字段的二维(2-D)有限元计算。根据定义,由于板的涡流不包含在二维公式中,因此需要单独包含它们。在这项工作中,该目标是通过与二维分析关联的一维(1-D)渗透方程对涡流建模来实现的。显示了一般时间变化和正弦时间变化的公式。从多个角度研究了二维模型和一维模型的耦合。为了表示时间离散分析中的一维涡流解,考虑了两种方法。进行的大量仿真表明,不适当的耦合可能不会影响要获得的损耗,但会影响其他电磁量,例如输入功率或功率因数。提出了一种与计算结果吻合的合适方法。在时谐方法的情况下,也讨论了这两个场公式的组合,为此采用了复磁阻的概念。这项工作的第二个目的是详细研究由变频器供电的旋转电机的损耗。已知与变频器电源相关的高次谐波与正弦电压电源相比会增加损耗。根据仿真,(i)转子板中的涡流损耗对失真的输入电压波形最敏感,并且(ii)通过适当选择变频器的开关频率,可以同时最大程度地降低涡流损耗。在测试机上进行的测量以及对它们的比较研究和仿真结果验证了所提出的方法。

著录项

  • 作者

    Pippuri Jenni;

  • 作者单位
  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 en
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