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A Novel Spoke-Type PM Machine Employing Asymmetric Modular Consequent-Pole Rotor

机译:一种采用非对称模块化后极转子的新型辐条式永磁电机

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This paper proposes a novel spoke-type permanent magnet (PM) machine, which adopts asymmetric modular consequent-pole (AMCP) rotor to enhance the effective PM flux due to the increased flux-focusing effect and reduced leakage flux and to improve the flux-weakening capability due to the increased d-axis inductance. Moreover, the pole-shaping method based on three sectional arcs is proposed to suppress the harmonics of airgap flux density. Since the rotor structure is relatively complex, the finite-element analysis together with multiobjective genetic algorithm is adopted to optimize this design. Furthermore, the electromagnetic performance of the spoke-type PM machine with the proposed AMCP rotor (Spoke-AMCP), including the open-circuit airgap flux density, phase back electromotive force, torque, PM utilization ratio, efficiency, and flux-weakening capability, are compared with two conventional spoke-type PM machines with evenly distributed and alternate flux barriers (Spoke1 and Spoke2) and consequent-pole spoke-type PM machine (Spoke-CP). It is demonstrated that the Spoke-AMCP machine obtains the largest output torque and PM utilization ratio, lowest torque ripple and similar efficiency compared to Spoke1, Spoke2 and Spoke-CP machines. Moreover, although the Spoke-AMCP machine has the largest PM flux linkage, it has slightly better flux-weakening capability than the Spoke1 and Spoke2 machines. Finally, a 12-slot/10-pole Spoke-AMCP machine is built and tested to verify the analyses.
机译:本文提出了一种新颖的辐条型永磁(PM)电机,该电机采用非对称模块化后极(AMCP)转子,以通过增加磁通聚焦效果和减小漏磁通量来提高有效PM磁通量,并改善磁通量。由于增加的d轴电感而导致的弱化能力。此外,为抑制气隙磁通密度的谐波,提出了一种基于三段弧形的极点成形方法。由于转子结构较为复杂,因此采用有限元分析和多目标遗传算法对本设计进行了优化。此外,带有拟议的AMCP转子(Spoke-AMCP)的轮辐式永磁电机的电磁性能包括开路气隙磁通密度,反电动势,转矩,PM利用率,效率和弱磁通能力与两台具有均匀分布和交替磁通屏障的传统轮辐式永磁电机(Spoke1和Spoke2)和后极轮辐式永磁电机(Spoke-CP)进行比较。结果表明,与Spoke1,Spoke2和Spoke-CP机器相比,Spoke-AMCP机器可获得最大的输出扭矩和PM利用率,最低的转矩脉动和相似的效率。而且,尽管Spoke-AMCP机器具有最大的PM磁通链,但其磁通减弱能力比Spoke1和Spoke2机器略强。最后,构建并测试了12槽/ 10极Spoke-AMCP机器,以验证分析结果。

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