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首页> 外文期刊>IEEJ Journal of Industry Applications >Procedure for Optimization of Interior Permanent Magnet Synchronous Motors with Concentrated Windings by Considering End-Leakage Flux
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Procedure for Optimization of Interior Permanent Magnet Synchronous Motors with Concentrated Windings by Considering End-Leakage Flux

机译:考虑末端漏磁通的集中绕组内部永磁同步电动机的优化程序

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摘要

An optimization procedure is proposed to determine the shapes and orientations of permanent magnets in interior permanent magnet synchronous motors with concentrated armature windings. In the proposed procedure, 2D finite element analysis coupled with the armature voltage equation is used to take into account the leakage flux at the end windings. The end leakage inductance in the equation is determined by 3D finite element analysis in advance. By using this procedure, the rotor shape of the motor can be optimized within a practical computational time. First, the validity of the analysis is confirmed by comparing measured and calculated characteristics of the motor. Then, the optimal shape and orientation of the permanent magnets in the motor are discussed using the results of the proposed optimization procedure. It is revealed that the consideration of the end-leakage flux is indispensable to estimate the characteristics of the motors with concentrated windings whose core length is relatively short as compared to the diameter, particularly under flux weakening control. An optimized rotor that reduces the iron loss at high speeds without considerable deterioration of the other important characteristics is also obtained by the proposed optimization procedure.
机译:提出了一种优化程序,以确定具有集中电枢绕组的内部永磁同步电动机中永磁体的形状和方向。在建议的过程中,将二维有限元分析与电枢电压方程式结合使用,以考虑端部绕组处的漏磁通。方程中的端漏电感预先通过3D有限元分析确定。通过使用此过程,可以在实际计算时间内优化电动机的转子形状。首先,通过比较测量和计算出的电动机特性来确认分析的有效性。然后,使用所提出的优化程序的结果来讨论电动机中永磁体的最佳形状和方向。揭示出,对于估计具有集中绕组的电动机的特性,尤其是在磁通弱化控制下,要估计具有集中绕组的铁心长度相对于直径而言相对较短的电动机的特性,就必须考虑漏磁通。通过提出的优化程序还可以获得一种优化的转子,该转子可在高速下减少铁损,而不会显着降低其他重要特性。

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