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Comparison of Single Piece and Fir Tree Based Spoke Type Rotor Designs for Low Cost Electric Vehicle Application

机译:基于单件和枞树的辐条型转子设计的比较低成本电动车辆应用

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Permanent magnet motors with ferrite magnets may be applicable to demanding electric vehicle (EV) applications, provided that designs with high power density and efficiency, and high resistance to demagnetization are developed. One rotor topology that allows meeting those challenges is a spoke type design, which can consist of two sections that are connected via a so-called fir tree structure, or a single section that may accommodate flux barriers with a certain topology. In this paper, a magneto-structurally optimized single piece rotor design for a high speed-high power density EV application is disclosed and compared against an existing fir tree based rotor solution. It is shown that an optimally designed single piece rotor design can meet about 80% of the power density of a fir tree rotor design at the cost of ~3 percent lower efficiency. Furthermore, the single piece rotor design may have better demagnetization resistance during severe faults. The theoretical findings have been supported by the static torque and demagnetization testing of a custom built prototype with the disclosed single piece rotor topology.
机译:与铁氧体磁体的永磁电动机可以适用于要求高的电动车辆(EV)应用中,提供具有高功率密度和效率,以及去磁高电阻的设计开发。其允许满足这些挑战之一转子拓扑结构是一个辐条式设计,其可以包括,它们通过所谓的枞树形结构,或一个单一的部分,其可以容纳具有特定拓扑磁通屏障连接的两个部分。在本文中,公开了一种用于高速高功率密度应用EV的磁结构上优化的单件式转子的设计和对现有的枞树基于转子溶液进行比较。结果表明,最佳设计的单件式转子设计可以以〜低3%的效率的成本约枞树转子设计的功率密度的80%的满足。另外,单件式转子设计可以具有严重故障期间更好抗消磁性。理论研究结果已被一个定制的原型与所公开的单件式转子拓扑的静转矩和退磁测试支撑。

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