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首页> 外文期刊>IEEE Transactions on Energy Conversion >A Novel High-Performance Consequent Pole Dual Rotor Permanent Magnet Vernier Machine
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A Novel High-Performance Consequent Pole Dual Rotor Permanent Magnet Vernier Machine

机译:一种新型高性能的极端双转子永磁游标机

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摘要

This article proposes a novel structure of consequent pole dual rotor permanent magnet vernier machine (CPDRVM). This structure consists of dual-sided stator in which windings are placed on the stator slots and magnets placed on the inner and outer rotor slots. Operation principles of the proposed VM carried out using flux modulation theory. The Finite Element analysis is utilized in order to evaluate the effect of magnet geometry on the produced torque and power factor. The motor characteristics and performance assessment are performed numerically. Furthermore, the parametric and sensitivity analysis are used to optimize the motor geometry. The proposed VM compared with PM machine and two conventional VMs. In this regard, performance indices such as flux, cogging torque, power factor, magnet volume, torque per magnet volume, Back-EMF, losses and efficiency profiles are calculated and compared. Results evidence better performance of the proposed structure. In fact, CPDRVM could produce higher torque density than conventional VMs. In addition, high power factor is reached for suggested topology.
机译:本文提出了一种新颖的杆双转子永磁游标机(CPDRVM)的新颖结构。该结构由双面定子组成,其中绕组放置在放置在内转子槽上的定子槽和磁体上。采用助焊剂调制理论进行的提议VM的操作原理。利用有限元分析来评估磁体几何形状对产生的扭矩和功率因数的影响。电动机特性和性能评估在数字上进行。此外,参数和灵敏度分析用于优化电动机几何形状。提出的VM与PM机和两个传统VM相比。在这方面,计算诸如磁通,齿槽扭矩,功率因数,磁体体积,扭矩,每磁体量,反电动势,损耗和效率概况等性能指标进行了比较。结果证据表现更好的拟议结构。实际上,CPDRVM可以产生比传统VM更高的扭矩密度。此外,达到了高功率因数,提出了建议的拓扑。

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