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Hybrid-Excited Doubly Salient Synchronous Machine With Permanent Magnets Between Adjacent Salient Stator Poles

机译:相邻凸极定子极之间具有永磁体的混合励磁双凸极同步电机

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摘要

A novel stator hybrid-excited, parallel flux path, synchronous machine of doubly salient topology is proposed. It has the novel features of: 1) hybrid dc field and permanent magnet (PM) excitation in the stator; 2) magnets placed in the slots between adjacent salient stator poles; and 3) the magnetic poles of PMs arranged, such that the flux premagnetizes the stator, but it is in a direction to oppose the dc excitation flux. The electromagnetic characteristics of the machine are analyzed on open-circuit and load. Since the new machine topology is developed from the variable-flux machine (VFM), a comparison of their electromagnetic torque and machine losses is conducted. The average electromagnetic torque of the hybrid-excited machine can be increased by 18% for fixed copper loss in comparison with the VFM due to the reduction of magnetic saturation in the stator. It is also shown that at high temperatures some risk of PM demagnetization exists when excited with dc and armature currents due to fringing flux that exists between the stator and the rotor poles. However, this affects only a very small area of the PMs. The performance of the hybrid-excited machine is predicted by a 2-D finite-element analysis and experimentally validated.
机译:提出了一种新型的双凸极定子混合励磁并联磁通路径同步电机。它具有以下新颖特征:1)定子中的混合直流磁场和永磁体(PM)励磁; 2)将磁铁放置在相邻凸极之间的槽中; 3)永磁体的磁极布置成使磁通量使定子预磁化,但其方向与直流励磁磁通相反。在开路和负载下分析机器的电磁特性。由于新的机器拓扑是从可变磁通机器(VFM)开发而来的,因此需要对其电磁转矩和机器损耗进行比较。相对于VFM,由于定子中磁饱和度的降低,对于固定铜损,混合励磁电机的平均电磁转矩可以提高18%。还表明,在高温下,由于存在于定子和转子磁极之间的边缘磁通量,当被直流和电枢电流激励时,存在PM退磁的风险。但是,这仅影响非常小的PM。混合激励机的性能通过二维有限元分析进行预测,并通过实验验证。

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