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Eddy current loss analysis in the rotor of surface-mounted permanent magnet brushless machine with retainer

机译:带保持架的表面安装式永磁无刷电机转子的涡流损耗分析

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摘要

For a permanent magnet machine, temperature rise due to the losses in the rotor can affect the performance of the permanent magnet. This is a critical problem for the designers of electric machine. These losses, especially eddy current losses in the conductive part of the rotor, cause heat which cannot easily be mitigate due to the mechanical structure. Therefore, it is very important to consider the losses in the designing step to ensure that the machine operates stably. The most common technique of reducing the eddy current losses is to divide them into smaller parts. The analysis for this segmentation structure is only possible in 3D-FEM (Finite Element Method) and though this requires a considerable amount of time during design step. Therefore, it is necessary to calculate the eddy current losses rapidly and accurately. In this paper, an eddy current loss analysis method in the retainer of the permanent magnet machine which has a high power density is proposed. First, the concept of effective conductivity is introduced to solve the segmentation problems not to use 3D-FEM. Also, in order to improve the accuracy of the proposed method, the skin effect which occurs in high speed driving region is considered and a FFT analysis is also performed on the harmonic components of air gap flux density. Finally the thermal analysis result which is based on the loss analysis result is also demonstrated and it is verified to compare with the thermal experimental results.
机译:对于永磁电机,由于转子中的损耗引起的温度升高会影响永磁体的性能。对于电机设计者来说,这是一个关键问题。这些损耗,尤其是转子导电部分中的涡流损耗,会导致热量,由于机械结构,热量无法轻易减轻。因此,在设计步骤中考虑损耗以确保机器稳定运行非常重要。减少涡流损耗的最常用技术是将其分成较小的部分。仅在3D-FEM(有限元方法)中才可以对此分割结构进行分析,尽管这在设计步骤中需要花费大量时间。因此,有必要快速而准确地计算出涡流损耗。本文提出了一种具有高功率密度的永磁电机保持架中的涡流损耗分析方法。首先,引入有效电导率的概念来解决不使用3D-FEM的分割问题。此外,为了提高所提出方法的准确性,考虑了在高速驱动区域中发生的集肤效应,并且还对气隙磁通密度的谐波分量进行了FFT分析。最后,对基于损耗分析结果的热分析结果进行了验证,并与热实验结果进行了比较。

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