首页> 外文期刊>IEEE Transactions on Industrial Electronics >Torque Analysis of Interior Permanent-Magnet Synchronous Motors by Considering Cross-Magnetization: Variation in Torque Components With Permanent-Magnet Configurations
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Torque Analysis of Interior Permanent-Magnet Synchronous Motors by Considering Cross-Magnetization: Variation in Torque Components With Permanent-Magnet Configurations

机译:考虑交叉磁化的内部永磁同步电动机的转矩分析:具有永磁构造的转矩分量的变化

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摘要

The variation in torque of interior permanent-magnet synchronous motors with driving conditions and magnet configurations is investigated by considering the cross-magnetization caused by magnetic saturation. The torque is decomposed into four components, i.e., the main magnet torque, main reluctance torque, cross-magnet torque, and cross-reluctance torque. It is revealed that the cross-magnet torque is always negative and this component reduces the total torque of the motor. This effect becomes large in the case of the V-type magnet configuration. The magnet configuration, which reduces the cross-magnetization effect, is also investigated by considering the mechanical strength against the centrifugal force caused by high-speed rotation. The validity of the calculation is confirmed by experiments.
机译:通过考虑磁饱和引起的交叉磁化,研究了内部永磁同步电动机的转矩随驱动条件和磁体配置的变化。该转矩被分解为四个分量,即,主磁体转矩,主磁阻转矩,交叉磁体转矩和交叉磁阻转矩。结果表明,跨磁铁转矩始终为负,并且该分量会降低电动机的总转矩。在V型磁体构造的情况下,该效果变大。还考虑了抵抗高速旋转引起的离心力的机械强度,从而研究了降低交叉磁化效应的磁体构造。通过实验证实了计算的有效性。

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