考虑机械部件和损耗的LPTN永磁同步电机热分析与验证

Jun-Woo Chin, Sung-Woo Hwang, Hyeon-Jin Park, Jung-Pyo Hong
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引用次数: 7

摘要

为了估计电机的热特性,本文对集总参数热网络(LPTN)进行了研究。具体来说,为了提高LPTN热分析的准确性,研究了冷却翅片对框架的影响、轴承的热建模以及可分为风阻损失和轴承损失的机械损失。为了反映在LPTN中,推导了描述散热片传热的数学方程,并通过实验进行了验证。此外,通过实验得到了机械损失,并将其分为随转速变化的风阻损失和轴承损失。最后,通过空载条件下的温度饱和试验,验证了通过LPTN确定的热分析结果。为了验证热分析结果,提出了6极9槽内嵌式永磁同步电机。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermal Analysis and Verification of PMSM Using LPTN Considering Mechanical Components and Losses
In order to estimate the thermal characteristics of electric machines, the research on the lumped parameter thermal network (LPTN) has been carried out in this paper. Specifically, to improve the accuracy of the thermal analysis of the LPTN, the effect of the cooling fins on the frame, thermal modeling of bearing and the mechanical losses which can be divided into windage loss and bearing loss have been investigated. To reflect in the LPTN, the mathematical equation which describes the heat transfer through the cooling fin is derived and verified by the experiment. Moreover, the mechanical losses were obtained through experiment and divided into windage loss and bearing loss as a function of the rotational speed. Finally, the thermal analysis results ascertained through the LPTN are verified by comparing the temperature saturation test at no-load conditions. To verify the thermal analysis results, the 6-pole/9-slot interior permanent magnet synchronous machine is proposed.
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