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Design studies of inner and outer embedded Permanent Magnet for hybrid electric vehicles

机译:混合动力汽车内,外嵌式永磁体的设计研究

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Hybrid vehicles require high torque for propel, hence permanent Magnet machines are highly suiting for the improvement in the torque density. The paper focus on designing built-in interior permanent magnet (IPM) synchronous machine for hybrid electric drive. With the permanent magnet switched from rotor to stator and the characteristics over a wide range of speed operation is studied. The results obtained though performance analysis shows that at 130 rpm high torque with power peaking at around 900 rpm. Both the inner and outer machine are studied using numerical study tool for performance analysis for the application mentioned above. The inner magnet rotor design has provide a better magnetic flux flow due to the larger flux linkage between the permanent magnet and stator pole. Both type of machines are evaluated for torque where the machine with inner magnet provide a higher torque density of 4.94% as compared to the outer magnet machines.
机译:混合动力车辆需要高扭矩来推进,因此永磁电机非常适合提高扭矩密度。本文着重于设计用于混合动力驱动的内置式内部永磁体(IPM)同步电机。在永磁体从转子切换到定子的情况下,研究了广泛的速度运行特性。通过性能分析获得的结果表明,在130 rpm时高扭矩,功率峰值在900 rpm左右。使用数值研究工具对内部和外部机器进行研究,以进行上述应用程序的性能分析。由于永磁体和定子磁极之间的磁链更大,内部磁体转子设计提供了更好的磁通量。两种类型的电机都经过了扭矩评估,其中带有内磁体的电机比外磁体的电机提供了更高的4.94%的转矩密度。

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