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首页> 外文期刊>IEEE Transactions on Industrial Electronics >A Novel Hybrid Dual-PM Machine Excited by AC With DC Bias for Electric Vehicle Propulsion
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A Novel Hybrid Dual-PM Machine Excited by AC With DC Bias for Electric Vehicle Propulsion

机译:交流电和直流偏置激励的新型混合双永磁电机用于电动汽车推进

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摘要

This paper proposes a novel hybrid-excited dual-PM machine for electric vehicle propulsion. The key is to use an integrated stator winding to replace the armature winding and the field winding in the conventional hybrid-excited machine. The stator winding is excited by ac current with dc bias, in which the ac component is used to produce the rotating armature field, while the dc bias current is used for the flux regulation. Therefore, the function of the ac and dc windings can be incorporated and realized by using just one set of winding. The torque density and flux regulating capability can be improved, and the winding configuration is also simplified. In addition, dual-PM excitation structure combines the advantage of stator-PM doubly salient machine and rotor-PM magnetic-geared machine, which can further enhance the torque capability. The operating principle and control strategy of the proposed machine are discussed. The electromagnetic performances are studied using the time-stepping finite-element method. A machine prototype is manufactured and experimental tests are conducted to verify the effectiveness of the machine design.
机译:本文提出了一种用于电动汽车推进的新型混合动力双永磁电机。关键是在传统的混合励磁电机中使用集成的定子绕组代替电枢绕组和励磁绕组。定子绕组由具有直流偏置的交流电流激励,其中交流分量用于产生旋转的电枢磁场,而直流偏置电流用于磁通调节。因此,仅使用一组绕组就可以合并并实现交流和直流绕组的功能。可以提高转矩密度和磁通调节能力,并且还可以简化绕组结构。另外,双永磁励磁结构结合了定子永磁双凸极电机和转子永磁双齿轮电机的优点,可以进一步提高转矩能力。讨论了所提出机器的工作原理和控制策略。使用时步有限元方法研究电磁性能。制造了机器原型,并进行了实验测试以验证机器设计的有效性。

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