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Impact of Rotor Pole Number on the Characteristics of Outer-Rotor Hybrid Excitation Flux Switching Motor for In-Wheel Drive EV

机译:转子杆数对轮式驱动EV外转子混合励磁通量开关电动机的影响

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This paper present the impact of rotor pole number on the characteristics of outer-rotor hybrid excitation flux switching motor (ORHEFSM) for in-wheel drive electric vehicle (EV) applications. In recent years, researches on in-wheel motor for EV drivetrain system become more popular due to their several advantages of independent wheel controllability and higher efficiency. In addition, it provides more cabin space caused by elimination of mechanical transmission gears as conventionally use in the most of existing EV with single motor propulsion system configuration. Moreover, the proposed motor has single piece of rotor making the motor more robust and suitable for high speed applications. Under some design restrictions and specifications, design principles and initial performances of the proposed motor at various rotor pole numbers with 12 statof slots are demonstrated. Initially, the coil arrangement tests are examined to confirm the operating principle and polarity of each armature coil phase of the proposed motor. Furthermore, the profile of flux linkage, induced voltage, cogging torque and torque characteristics at various field excitation current density conditions are analyzed based on 2D-finite element analysis (FEA). The results obtained show that the appropriate combination of stator slot-rotor pole configurations are 12S-10P which initially provide highest torque and power density. Thus, by further design refinement and optimization it is expected that the motor will successfully achieved the target performances.
机译:本文介绍了转子杆数对轮式驱动电动车(EV)应用的外转子混合励磁通量切换电动机(钻石)的影响。近年来,由于其独立车轮可控性和更高效率的几个优点,对EV动力传动系统的轮内电机的研究变得更加流行。此外,它提供了通过使用单电机推进系统配置的现有现有EV中的通常使用的机械传动齿轮引起的更多机舱空间。此外,所提出的电动机具有单件转子,使电动机更加坚固,适用于高速应用。在一些设计限制和规范下,对各种转子杆数的设计原理和初始性能,具有12个Statof槽的各种转子杆数。最初,检查线圈布置测试以确认所提出的电动机的每个电枢线圈相的操作原理和极性。此外,基于2D-有限元分析(FEA)分析了各种场励磁电流密度条件下的磁通连杆,感应电压,齿槽扭矩和扭矩特性的轮廓。得到的结果表明,定子槽 - 转子杆配置的适当组合是12S-10P,最初提供最高扭矩和功率密度。因此,通过进一步设计改进和优化,预期电动机将成功实现目标性能。

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