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Review and Enhancements of Rotor Designs for High Speed Synchronous Reluctance Machines

机译:高速同步磁阻机转子设计的回顾和增强

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Rare earth metals are particularly required as a basic component of permanent magnets in modern traction drives for electric vehicles. Due to the limited global resources of raw materials, the environmental impact of mining and the challenges of recycling, the development of resource-saving alternatives is an important research topic. One option is the use of a synchronous reluctance machine (SynRM), whose rotor does not require magnetic materials, aluminum or copper due to its operating principle. Besides the cost-effective manufacturing, the robust and resource-saving rotor design and high efficiency of SynRM, this machine type suffers from a low power factor, poor torque and power density and earlier power drop in the field weakening range in comparison to permanent-magnet synchronous motors. These disadvantages result from the fragile design of the rotor lamination stack and the resulting limited maximum permissible operating speed of current industrial motors, which are therefore not yet suitable for traction drive applications.This paper gives an overview of new rotor concepts and designs which aim to increase the maximum operation speed of SynRM by optimizing the structural design. Subsequently, a new rotor topology is discussed and evaluated, especially regarding its mechanic and electromagnetic properties as well as the suitability for series production.
机译:稀土金属特别需要作为电动车辆现代牵引驱动器中的永磁体的基本组件。由于原材料的全球资源有限,采矿环境的影响和回收的挑战,资源节约替代品的发展是一个重要的研究主题。一种选择是使用同步磁阻机(SYNRM),其转子由于其操作原理而不需要磁性材料,铝或铜。除了经济高效的制造,鲁棒和节省资源的转子设计和同步的高效率之外,该机器类型遭受了低功率因数,扭矩和功率密度不良和较早的电源下降与永久性相比 - 磁铁同步电机。这些缺点由转子叠片堆的脆弱设计和所得的电流工业电机的最大最大允许操作速度产生,因此尚未适用于牵引驱动应用。本文还概述了旨在的新转子概念和设计通过优化结构设计提高Synrm的最大运行速度。随后,讨论并评估了新的转子拓扑,特别是关于其机械和电磁特性以及串联生产的适用性。

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