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Modeling of Core Losses in Electrical Machine Laminations Exposed to High Frequency and Non-sinusoidal Flux

机译:高频和非正弦磁通的电机叠片铁心损耗建模

摘要

Electrical machines account for about 60% of the electricity consumption in industrial countries; hence a huge energy savings could be achieved by even a small increment in the machine efficiency. Improving the designs of electrical machines requires accurate quantification of the machine losses. A significant portion of the losses in electrical machines is caused by the core loss in the magnetic material. The physical mechanism of core losses is still an open problem, and most of the available core loss models are based on limited curve fitting techniques, instead of a physical understanding of magnetic material behaviour. udIn this thesis, a new method is proposed to separate the core loss components in laminations exposed to high frequency excitations. Accurate separation of core losses is achieved by calculating the hysteresis energy loss at each frequency, taking into account the flux density distribution. The results highlight that the conventional assumption of constant hysteresis energy loss per cycle is only valid at low frequencies, where skin effect is negligible. In addition to the new separation method, a physics based core loss model is developed to estimate core losses in electrical machine laminations exposed to non-sinusoidal flux. The developed model accounts for the effects of the non-uniform flux density inside the lamination. The model results are verified experimentally by comparing with the measured core losses in laminations exposed to the flux waveforms in different sections of permanent magnet (PM) and switched reluctance (SR) machines.ud
机译:电机约占工业国家电力消耗的60%;因此,即使机器效率提高很小,也可以节省大量能源。改善电机设计需要对电机损耗进行准确量化。电机中的很大一部分损耗是由磁性材料中的铁芯损耗引起的。铁损的物理机制仍然是一个未解决的问题,大多数可用的铁损模型都是基于有限的曲线拟合技术,而不是对磁性材料的行为的物理理解。 ud本文提出了一种新方法来分离暴露于高频激励的叠片中的铁损成分。考虑磁通量密度分布,通过计算每个频率下的磁滞能量损耗,可以实现磁心损耗的精确分离。结果突出表明,每个周期的恒定磁滞能量损耗的常规假设仅在低频下有效,而集肤效应可忽略不计。除了新的分离方法外,还开发了基于物理的铁损模型,以估算暴露在非正弦磁通量的电机叠片中的铁损。开发的模型考虑了层压板内部不均匀的磁通密度的影响。通过与暴露在永磁体(PM)和开关磁阻(SR)机器不同部分的磁通波形中的叠片中测得的铁损进行实验比较,对模型结果进行了实验验证。 ud

著录项

  • 作者

    Ibrahim Maged;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类
  • 入库时间 2022-08-31 14:42:50

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