基于永磁辅助同步磁阻电机的电动汽车牵引

N. Bianchi, E. Fornasiero, Enrico Carraro, S. Bolognani, M. Castiello
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引用次数: 17

摘要

近年来的研究表明,同步磁阻电机既适用于电动汽车,也适用于混合动力汽车。当然,适当的转子设计是必要的,因为主要转矩是由于转子的各向异性,即直轴和正交轴之间的磁导差。设置磁通屏障端部是为了减小槽谐波引起的转矩脉动。采用转子不对称,减小了转矩脉动。深入介绍了转子设计对电机性能的影响,给出了几种不同转子几何形状的同步磁阻电机的实验测试结果。在磁通屏障中插入永磁体,可以提高同步磁阻电机的性能。重点介绍了永磁采用的主要优点和缺点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electric vehicle traction based on a PM assisted synchronous reluctance motor
It is recently demonstrated that the synchronous reluctance motor is well suited for electric as well as for hybrid electric vehicles. Of course, a proper rotor design is necessary, since the main torque is due to the rotor anisotropy, that is, the permeance difference between the direct- and the quadrature-axis. The flux barrier ends are placed so as to reduce the torque ripple due to the slot harmonics. The torque ripple is also reduced adopting rotor asymmetries. The impact of the rotor design on the motor performance is presented deeply, showing several experimental test results carried out on synchronous reluctance motors with different rotor geometries. Permanent magnet can be inset in the flux barriers to assist the synchronous reluctance motor improving its capabilities. The main advantages and drawbacks of the permanent magnet adoption are highlighted.
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