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Investigation of a Novel Five-Phase Modular Permanent-Magnet In-Wheel Motor

机译:新型五相模块化永磁轮毂电动机的研究

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摘要

To increase the driving comfortableness and reliability of electric vehicles, multi-phase fault-tolerant permanent-magnet synchronous motors (PMSM) are becoming promising candidates, especially for the vehicles adopting in-wheel PMSM schemes. In this paper, a novel five-phase fault-tolerant modular in-wheel PMSM is proposed and investigated. The applicable slot/pole combinations are recommended for five-phase PMSM, and the 40-slot/42-pole scheme is selected for the wheel driven application in this paper. The electromagnetic structure was designed, and the fault-tolerant tooth was optimized to obtain better torque curve. The fault-tolerant ability was analyzed under some fault conditions, including one phase open-circuited, two adjacent phases open-circuited, two non-adjacent phases open-circuited and one single phase short-circuited. The results indicate that the drive system can survive these fault conditions; through proper current control strategies, different fault-tolerant performances can be obtained. The proposed scheme is proved to have satisfying electromagnetic and fault-tolerant performances.
机译:为了增加电动车辆的驾驶舒适性和可靠性,多相容错永磁同步电动机(PMSM)成为有前途的候选者,特别是对于采用轮毂PMSM方案的车辆。本文提出并研究了一种新型的五相容错模块化轮毂永磁同步电动机。对于五相PMSM,建议使用适用的槽/极组合,而本文中的轮驱动应用选择40槽/ 42极方案。设计了电磁结构,优化了容错齿,以获得更好的转矩曲线。在某些故障条件下分析了容错能力,包括一个相开路,两个相邻相开路,两个不相邻相开路和一个单相短路。结果表明,驱动系统可以在这些故障条件下幸存下来。通过适当的电流控制策略,可以获得不同的容错性能。实践证明,该方案具有令人满意的电磁性能和容错性能。

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