首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Cogging Torque Reduction in Double-Rotor Hybrid Excited Axial Switched-Flux Permanent Magnet Machine
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Cogging Torque Reduction in Double-Rotor Hybrid Excited Axial Switched-Flux Permanent Magnet Machine

机译:双转子混合型激发轴向开关磁通永磁机的齿轮扭矩减小

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摘要

In this paper, a novel double-rotor hybrid excited axial switched-flux permanent magnet (DRHE-ASFPM) machine incorporating the advantages of the axial switched-flux permanent magnet (PM) machine and wound field synchronous machine is investigated. Similar to the switched-flux PM machine, there is a large undesired cogging torque in the DRHE-ASFPM machine because of high air-gap density and strong flux-focusing effect. This paper presents and compares three cogging torque reduction techniques in the DRHE-ASFPM machine, including stator/rotor teeth notching, stator slot chamfering, as well as stator slot chamfering and teeth notching (SCTN). The analytical expression of the cogging torque is derived and three methods are analyzed and compared in detail. As verified by 3-D finite element (FE) method, the SCTN technique can effectively reduce the cogging torque extremely, but slightly decrease the output torque under both PM and hybrid excitation modes. Finally, an optimized prototype machine with SCTN structure is manufactured, and the experiment is performed to validate the FE predicted results.
机译:本文采用了一种新型双转子混合励磁轴向开关 - 永久磁铁(DRHE-ASFPM)机器,其具有轴向开关通量永磁体(PM)机器和卷绕现场同步机的优点。类似于开关磁通PM机,由于高空气间隙密度和强通量聚焦效果,DRHE-ASFPM机中存在大的不希望的齿槽扭矩。本文介绍了DRHE-ASFPM机中的三种齿槽扭矩减少技术,包括定子/转子齿切口,定子槽倒角,以及定子槽倒角和齿缺口(SCTN)。推导出齿槽扭矩的分析表达,并详细分析了三种方法。如3-D有限元(FE)方法所验证的,SCTN技术可以极大地减小齿槽扭矩,但在PM和混合励磁模式下略微降低输出扭矩。最后,制造了一种具有SCTN结构的优化原型机,进行实验以验证FE预测结果。

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