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Topologies of single-phase outer-rotor hybrid excitation flux switching motor for in wheel drive applications

机译:用于轮驱动应用的单相外转子混合励磁励磁通量开关电动机的拓扑

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Most of commercial Hybrid Electric Vehicle (HEV)used single motor and transmission gears coupled to the wheels. This system leads to the transmission losses and reduce the efficiency and reliability of the motor. Therefore, in-wheel direct drive mechanism is introduced to overcome this problem. In-wheel direct drive eliminates the mechanical transmission, differential gears and drive belts. Thus, in-wheel direct drive provides quick torque response, higher efficiency, weight reduction, and increased vehicle space. As one of alternative, a new design of hybrid excitation flux switching motor (ORHEFSM) for in-wheel drive EV is proposed. First coil arrangement tests are analyzed to confirm the phase of each armature coil phase. Then, flux comparison of PM with DC FEC, flux linkage at various FEC current densities, cogging torque, induced voltage/back EMF of PM with DC FEC, torque and power versus FEC current density at various armature coil current densities are also analyzed. The generated results show that the appropriate combination of stator slot-rotor pole configurations are 8S-4P and 8S-8P respectively, which initially provide highest torque performance and power density. By further design modification and optimization it is expected that the low cost motor will successfully achieved the target performances.
机译:大多数商用混合动力电动车(HEV)使用了连接到车轮的单个电动机和传动齿轮。该系统导致传输损耗,降低电机的效率和可靠性。因此,引入了轮内直接驱动机构来克服这个问题。轮内直接驱动消除了机械传动,差动齿轮和驱动带。因此,轮内直接驱动提供了快速的扭矩响应,更高的效率,减重和增加的车辆空间。作为替代方案之一,提出了用于轮内驱动EV的混合励磁通量开关电动机(ORHEFSM)的新设计。分析了第一线圈布置测试以确认每个电枢线圈相的相位。然后,还分析了PM用DC FEC,各种FEC电流密度,齿槽扭矩,具有DC FEC,扭矩和功率的PM的诱导电压/后ECF在各种电枢线圈电流密度下的PM处的通量比较。所生成的结果表明,定子槽 - 转子杆配置的适当组合分别是8S-4P和8S-8P,其最初提供最高的扭矩性能和功率密度。通过进一步的设计修改和优化,预计低成本电机将成功实现目标性能。

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