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Design optimization of 12Slot-10Pole hybrid excitation flux switching synchronous machine with 0.4kg permanent magnet for hybrid electric vehicles

机译:用0.4kg永磁体进行混合动力电动车辆12SLOT-10POLE混合励磁磁通开关同步机的设计优化

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Hybrid excitation flux switching synchronous machine (HEFSSM) has several attractive features compared to interior permanent magnet synchronous machines (IPMSM) conventionally employed in hybrid electric vehicles (HEV). Among various types of HEFSSM, the machine with both permanent magnet (PM) and field excitation coil (FEC) on the stator has the advantages of robust rotor structure together with variable flux control capabilities that make this machine becoming more attractive to apply for high-speed motor drive systems. This paper presents an investigation into the design possibility and parameter optimization study of 12Slot-10Pole HEFSSM for traction drives in HEV. The research target is to design a machine with reduced amount of rare-earth magnet, a maximum torque of 210Nm, a maximum power of more than 123kW, and a maximum power density of more than 3.5kW/kg. Extensions in speed and torque ranges are chosen for optimization aims. The deterministic design approach is used to treat ten design parameters in an effort to achieve the target performances. As a result, the designed HEFSSM with 0.4kg PM is able to get much higher power density compared to existing IPMSM installed on a commercial SUV-HEV.
机译:混合励磁通量切换同步机(HEFSSM)与常规用于混合动力电动汽车(HEV)的内部永磁同步机(IPMSM)相比具有几个有吸引力的特征。在各种类型的HEFSSM中,定子上具有永磁体(PM)和现场激励线圈(FEC)的机器具有鲁棒转子结构的优点,使得使该机器更具吸引力的可变通量控制能力,可以申请高 - 速度电机驱动系统。本文介绍了HEV中12SLOT-10POLE HEFSSM的设计可能性和参数优化研究的调查。研究目标是设计一种稀土磁铁量减少的机器,最大扭矩为210nm,最大功率大于123kW,最大功率密度超过3.5kW / kg。选择速度和扭矩范围的延伸部分以进行优化目标。确定性设计方法用于治疗十个设计参数,以实现目标性能。因此,与安装在商业SUV-HEV上的现有IPMSM相比,设计的HEFSSM具有0.4kg PM的功率密度更高。

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