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Design and performance of 6-slot 5-pole PMFSM with hybrid excitation for hybrid electric vehicle applications

机译:用于混合动力电动汽车的具有混合激励的6槽5极PMFSM的设计和性能

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An interest in electric vehicles (EVs) and hybrid electric vehicles (HEVs) from automakers, governments and customers due to concerns on our environment makes it as more attractive research. Since electric motors are the core of both EVs and HEVs, it is a pressing need for researchers to develop advanced electric motors. As one of the candidates, permanent magnet flux switching machine (PMFSM) with additional coil excitation has several attractive features compared to conventional interior permanent magnet synchronous machines (IPMSM) used in HEV. This is because of its variable flux control capability and robust rotor structure that makes it possible to apply for high speed motor drive system with reduction gear. This paper presents an investigation into design possibility of 6-slot 5-pole PMFSM with hybrid excitation for traction drives in HEVs. An improved design is examined in effort to gain a better performance in its maximum torque and power production. As the design results, the designed motor enables to keep the same power density in existing IPMSM installed on a commercial SUV-HEV.
机译:由于对环境的关注,汽车制造商,政府和客户对电动汽车(EV)和混合电动汽车(HEV)的兴趣使其成为更具吸引力的研究。由于电动机是电动汽车和混合动力汽车的核心,因此研究人员迫切需要开发先进的电动机。作为候选之一,与HEV中使用的传统内部永磁同步电机(IPMSM)相比,具有附加线圈励磁的永磁通量开关机(PMFSM)具有几个吸引人的功能。这是因为它具有可变的磁通控制能力和坚固的转子结构,从而有可能适用于带有减速齿轮的高速电机驱动系统。本文提出了混合动力车用混合动力激励的6槽5极PMFSM在HEV中的设计可能性的研究。为了改进其最大扭矩和功率产生的性能,对改进的设计进行了研究。作为设计结果,所设计的电动机能够使商用SUV-HEV上安装的现有IPMSM保持相同的功率密度。

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