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A Novel Magnetic Flux Weakening Method of Permanent Magnet Synchronous Motor for Electric Vehicles

机译:电动汽车用永磁同步电动机的弱磁通量新方法

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摘要

In this paper, a novel field weakening control method for permanent magnet synchronous motor is proposed to improve maximum speed range and maximum power, which are important parameters for electric vehicle application. Unlike general field weakening control method in which current vector is used to decrease linkage magnetic flux, the proposed method can decrease linkage magnetic flux by creating a difference gap between a stator and a rotor in axial direction without moving the current vector. This method is effective in increasing the maximum speed and the output power of permanent magnet synchronous motor, including surface permanent magnet-type rotor and interior permanent magnet-type rotor. Three-dimensional finite element method is adopted for the analysis of the proposed method in order to calculate d-axis and q-axis inductances as well as linkage magnetic flux according to axial gap. Motor performances according to speed are also compared with one another.
机译:提出了一种新型的永磁同步电动机弱磁控制方法,以提高最大速度范围和最大功率,这是电动汽车应用的重要参数。不同于使用电流矢量来减小连杆磁通量的一般的磁场削弱控制方法,所提出的方法可以通过在轴向方向上在定子和转子之间产生差异间隙而无需移动电流矢量来减小连杆磁通量。该方法有效地提高了包括表面永磁型转子和内部永磁型转子在内的永磁同步电动机的最大速度和输出功率。该方法的分析采用三维有限元方法,以便根据轴向间隙计算出d轴和q轴电感以及连杆磁通量。还将根据速度的电动机性能相互比较。

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