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The Design of Interior Permanent Magnet Brushless Motor Control System based on Finite Element Method

机译:基于有限元法的室内永磁无刷电机控制系统设计

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The rotor of IPM (Interior Permanent Magnet) brushless motor is characterized with a high-strength structure so that the magnet is protected from centrifugal separation when running at a high speed; also, as designed a non-concentrically circular rotor to increase the motor torque output, there is a reluctance torque produced by the salient poles effect in addition to the electromagnetic torque generated by the interactive reaction between the magnet and the coil; however, such a consequence will lead to an increase of the cogging torque. Thus, this research explored the salient-pole interior permanent magnet by going through the modifications of appearance dimensions of motor rotor, application of equivalent magnetic-circuit analysis and finite element method to analyze the cogging torque in a bid to make the objective toward the cogging torque reduction in interior permanent magnet brushless motor achievable.
机译:IPM的转子(内部永磁体)无刷电动机的特征在于高强度结构,使得当以高速运行时,磁体免受离心分离的保护; 而且,如设计的非同心圆形转子,以增加电动机扭矩输出,除了通过磁铁和线圈之间的交互式反应产生的电磁扭矩之外,还有阳光扭矩产生的磁阻扭矩; 然而,这种后果将导致齿槽扭矩的增加。 因此,本研究通过电动机转子的外观尺寸的修改,应用等效磁路分析和有限元方法来探索凸极内部永磁体,分析齿槽的齿轮扭矩以使目标朝向齿槽 扭矩减小内部永磁无刷电动机可实现。

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