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Design and Implementation of a Low Power Outer-Rotor Line-Start Permanent-Magnet Synchronous Motor for Ultra-Light Electric Vehicles

机译:超轻型电动汽车用低功率外转子线启动永磁同步电动机的设计与实现

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Recently, while electric vehicles (EV) have substituted the fossil fuel vehicles, the design of the electrical motors with more efficient and less mechanical converters has become mandatory due to the weighting gears, mechanical differentials, and other cost-increasing parts. To overcome these problems, double electrical motors with low speed and high torque have been designed and used in the rear wheels of the EVs without any gearbox and mechanical differential. In this study, a novel outer rotor line-start hybrid synchronous motor is proposed as another solution. For this aim, four different hybrid rotor types, including magnets and rotor bars, have been designed and analyzed. Calculation and estimation of all parameters to design a motor are introduced. All of the analyses were carried out by Finite Elements Method (FEM). One of the analyzed motors, which is called Type-D was selected and implemented because of the best startup performance and better steady-state behavior under the rated load and overload. While holding this motor at synchronous speed under nominal load, in case of overloading, it remained in asynchronous mode, thus maintaining the sustainability of the system. Obtained results prove that the newly proposed outer rotor LSSM has the advantages of both synchronous motor and asynchronous motor. All of the experimental results validate the simulations well. The effects of the magnet alignments and dimensions on the performance of the motors are presented.
机译:近来,尽管电动汽车(EV)替代了化石燃料汽车,但由于配重齿轮,机械差速器和其他成本增加的部件,设计具有更高效率和更少机械转换器的电动机已成为强制性要求。为了克服这些问题,已经设计了低速和高扭矩的双电动机,并在没有任何变速箱和机械差速器的情况下用于电动汽车的后轮中。在这项研究中,提出了一种新颖的外转子线启动混合同步电动机作为另一种解决方案。为此,已经设计并分析了四种不同的混合转子类型,包括磁体和转子棒。介绍了用于设计电动机的所有参数的计算和估计。所有分析均通过有限元方法(FEM)进行。之所以选择并实施其中一种被分析为D型的电动机,是因为其在额定负载和过载条件下具有最佳的启动性能和更好的稳态性能。在额定负载下以同步速度保持该电动机时,如果发生过载,它将保持异步模式,从而保持系统的可持续性。所得结果证明,新提出的外转子LSSM具有同步电动机和异步电动机的优点。所有的实验结果都很好地验证了仿真。给出了磁体排列和尺寸对电动机性能的影响。

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