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Electromagnetic-thermal coupled analysis method for interior PMSM

机译:内部永磁同步电动机的电磁热耦合分析方法

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This paper presents a study on the 3D (Three Dimensional) coupled analysis of electromagnetic and thermal analysis. A 3D study for both electromagnetic and thermal analyses is considered because the dominant heat sources of electrical machines are copper loss in the coils and iron loss in the core. The copper loss results from the current flowing through the coils which are located in the axial direction and have end-turns, and the iron loss (joule loss and hysteresis loss) occurs from the magnetic flux in the magnetic core with time variations and intersects. Thus, 3D rather than 2D analysis can effectively represent the loss and thermal distribution in each part of the motor. It is also necessary that an electromagnetic field analysis accounting for the temperature increase in each part should be taken into account because the heat generation from these losses transfers to the inside of the motor's structure, changes the material properties, and finally causes an enormous impact on the motor characteristics. These physical phenomena can be handled and evaluated in the coupled analysis which is shown in the proposed procedure and thermal circuit diagram between electromagnetic and thermal analysis. Results from the experimental set-up including the fabricated 3kW interior PMSM, inverter, TMS320F28335 TI DSP with sine-triangle comparison current control method confirm the good agreement with the simulation results. Finally, the experimentally obtained results are also presented for comparison with the simulated results to verify the validity and accuracy of the proposed analysis method in the paper.
机译:本文介绍了电磁和热分析的3D(三维)耦合分析的研究。考虑使用3D研究进行电磁和热分析,因为电机的主要热源是线圈中的铜损和铁心中的铁损。铜损是由流过位于轴向并具有最终匝数的线圈的电流引起的,铁损(焦耳损和磁滞损)是由磁芯中的磁通随时间变化和相交而产生的。因此,用3D而不是2D分析可以有效地表示电动机各部分的损耗和热分布。还必须考虑到考虑每个部分温度升高的电磁场分析,因为这些损耗产生的热量会转移到电机结构内部,改变材料性能,并最终对电机产生巨大影响。电机特性。可以在耦合分析中处理和评估这些物理现象,耦合分析在建议的过程以及电磁和热分析之间的热电路图中显示。实验设置的结果包括制造的3kW内部PMSM,逆变器,采用正弦三角形比较电流控制方法的TMS320F28335 TI DSP,与仿真结果吻合良好。最后,还给出了实验获得的结果,以与模拟结果进行比较,以验证本文提出的分析方法的有效性和准确性。

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