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Field-Weakening Capability of Interior Permanent-Magnet Machines With Salient Pole Shoe Rotors

机译:具有凸极靴转子的内部永磁电机的弱磁场能力

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摘要

Brushless permanent-magnet (BLPM) machines, with inherent advantages of high-power density and high efficiency, have been widely employed to achieve traction characteristics for traction applications. Generally, traction characteristics require high torque at low speed and wide field-weakening region keeping constant power. However, both conventional interior permanent-magnet (IPM) and surface-mounted permanent-magnet (SPM) machines suffer from high-speed issues in the field-weakening region. A different BLPM machine topology, the pole shoe topology, is proposed in this paper. Although the pole shoe machine is common in industrial variable speed drives employing constant torque regimes, it has not been previously considered for machines designed for a wide field-weakening region. For analysis and comparison, a conventional IPM machine, which is employed as the Nissan Leaf vehicle traction machine, is studied as a reference benchmark machine. Experimental results from this machine are used to validate the analysis presented in this paper. The design results show that the proposed pole shoe machine achieves better field-weakening performance, compared with the conventional IPM and SPM machine topologies.
机译:具有高功率密度和高效率的固有优点的无刷永磁体(BLPM)机器已被广泛用于实现牵引应用的牵引特性。通常,牵引特性要求在低速时具有高扭矩,并在较弱的磁场范围内保持恒定功率。但是,常规的内部永磁体(IPM)和表面安装的永磁体(SPM)机器在磁场弱化区域都遭受高速问题的困扰。本文提出了一种不同的BLPM机器拓扑,即极靴拓扑。尽管极靴机在采用恒定转矩方式的工业变速驱动器中很常见,但以前尚未为设计用于宽磁场弱化区域的机器进行过考虑。为了进行分析和比较,研究了用作日产Leaf车辆牵引机的传统IPM机作为参考基准机。该机器的实验结果被用于验证本文提出的分析。设计结果表明,与传统的IPM和SPM机器拓扑相比,拟议的极靴机器具有更好的弱磁场性能。

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