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Twelve-phase open-winding SPMSM development for speed dependent reconfigurable traction drive

机译:十二阶段开放式SPMSM开发,用于速度相关的可重构牵引驱动

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Commercially available electrical machines are generally not optimized for a broad operating range, as required in e.g. vehicle traction applications. The required mechanical angular velocity of the wheels for electrical vehicle propulsion is relatively low (around 1,000 rpm), while the torque demand is high (around 500 Nm). This combination requires an adequate solution in the mechanical, electromechanical or electrical domain. No cheap, reliable, lightweight and efficient solution has been invented yet. This paper presents an operation method for a dynamic electric vehicle propulsion system using variable torque/speed characteristics. With this method, the speed range of an electrical machine can be extended. The twelve-phase open-winding surface permanent magnet synchronous machine presented in this paper is developed to verify the different dynamic drive operation modes in practice.
机译:如例如图1中所要求的那样,市售电机通常没有针对广泛的操作范围进行优化。车辆牵引应用。用于电动车辆推进的车轮所需的机械角速度相对较低(约1,000 rpm),而扭矩需求较高(约500 Nm)。这种组合需要在机械,机电或电气领域提供适当的解决方案。尚未发明出便宜,可靠,轻巧和高效的解决方案。本文提出了一种利用可变转矩/速度特性的动态电动汽车推进系统的运行方法。通过这种方法,可以扩大电机的速度范围。本文提出的十二相开卷表面永磁同步电机是为验证实际中不同的动态驱动运行模式而开发的。

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