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首页> 外文期刊>Energy Conversion, IEEE Transactions on >A New Hybrid Permanent Magnet Synchronous Reluctance Machine With Axially Sandwiched Magnets for Performance Improvement
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A New Hybrid Permanent Magnet Synchronous Reluctance Machine With Axially Sandwiched Magnets for Performance Improvement

机译:新型带轴向夹式永磁混合永磁同步磁阻电机以提高性能

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摘要

This paper proposes a new hybrid permanent magnet synchronous reluctance machine (HPM-SynRM) with axially sandwiched magnets for improving machine performance including airgap flux density, back electromotive force, torque, torque ripple, efficiency, and power factor. The significant feature of the proposed machine is the configuration of axially integrating two kinds of independent and symmetrical rotors with a specific assembling angle, such that it can make full use of the magnetic torque and the reluctance torque for efficient production of the total torque. Meanwhile, the proposed machine greatly improves the PM utilization for high magnetic torque, and releases the stress condition of SynRM rotors for more proper design of ribs, thus to further improve the torque, efficiency, and power factor, especially when compared to the conventional PM-SynRM with the same machine specifications and operating conditions. The design of the proposed machine, including the PM optimization using the Kriging method and genetic algorithm, rib width and assembling angle design using the finite element method (FEM), has been first discussed in detail. Then, the advantages of the proposed machine are highlighted by quantitatively comparing to a conventional PM-SynRM by the FEM. Finally, the proposed machine is manufactured to validate its high performance by experiments.
机译:本文提出了一种新型混合永磁同步磁阻电机(HPM-SynRM),该电机具有轴向夹心磁体,可改善电机性能,包括气隙磁通密度,反电动势,转矩,转矩脉动,效率和功率因数。所提出的机器的显着特征是轴向组合具有特定装配角度的两种独立且对称的转子的构造,从而可以充分利用磁转矩和磁阻转矩来有效地产生总转矩。同时,提出的机器极大地提高了高磁转矩永磁发电机的利用率,并释放了SynRM转子的应力条件,以更加合理地设计肋板,从而进一步提高了转矩,效率和功率因数,特别是与传统永磁发电机相比-SynRM具有相同的机器规格和操作条件。首先详细讨论了所提出的机器的设计,包括使用Kriging方法和遗传算法的PM优化,使用有限元方法(FEM)的肋骨宽度和装配角度设计。然后,通过与FEM的传统PM-SynRM进行定量比较,凸显了所提出机器的优势。最后,制造该提议的机器以通过实验验证其高性能。

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