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Replacing Stator of Existing Three-phase Synchronous Reluctance Machines towards Improved Multiphase Machines Performance

机译:更换现有三相同步磁阻机的定子,以改善多相机械性能

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This paper researches the possibility of changing the stator of existing three phase synchronous reluctance motors to achieve improved multiphase machines performance, keeping the same rotor. An optimal design for the stator is proposed. Thus, several geometrical constraints are imposed such as fixed inner stator bore diameter, air gap length and axial stack length. Analysis and discussion to select the optimal dimensions of the proposed multiphase stator with no extra cost in both iron and copper are provided, considering a main goal to achieve a higher torque gain and a minimum torque ripple. By means of finite element magnetic simulation, two stator designs (60 and 40 slots) are simulated and compared with the 3-phase (36 slots) SynRM. It has been found that a 5-phase SynRM with 60 slots stator gives better performance compared to a 3-phase SynRM: the average torque is increased by 11.78%, the efficiency and the power factor are increased by around 0.72% and 5.54% respectively compared to 3-phase. However, the torque ripple becomes slightly higher, but within the permitted range (<10%). This proves that it is possible to use the same rotor of existing 3-phase SynRMs and design a multiphase stator to achieve an improved machine performance.
机译:本文研究了改变现有三相同步磁阻电动机定子的可能性,以实现改进的多相机性能,保持相同的转子。提出了定子的最佳设计。因此,施加了若干几何约束,例如固定内部定子孔径,气隙长度和轴向堆叠长度。考虑到实现更高的扭矩增益和最小扭矩脉动,提供了在诸如铁和铜中没有额外成本的提出的多相定子的最佳尺寸的分析和讨论。通过有限元磁模拟,模拟两个定子设计(60和40槽)并与三相(36个槽)Synrm进行比较。已经发现,与6相同步相比,带有60个槽定子的5相同步提供更好的性能:平均扭矩增加11.78%,效率和功率因数分别增加约0.72%和5.54%与3阶段相比。然而,扭矩纹波变得略高,但在允许的范围内(<10%)。这证明可以使用现有的3相同步的相同转子并设计多相定子以实现改进的机器性能。

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