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首页> 外文期刊>Journal of Microwaves, Optoelectronics and Electromagnetic Applications >Magnetic topology with axial flux concentration: a technique to improve permanent-magnet motor performance
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Magnetic topology with axial flux concentration: a technique to improve permanent-magnet motor performance

机译:具有轴向磁通量集中的磁拓扑:一种提高永磁电动机性能的技术

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Abstract This article presents a different topology for the magnetic circuit of permanent-magnet motors, using the concept of Axial Flux Concentration. By means of longitudinal extension of the rotor length beyond the stator core, a substantial increase in the flux per pole is enabled, improving the general performance of the machine. Even in low cost motors with ferrite magnets, this improvement is easily achieved utilizing the proposed scheme. With rare-earth magnets this technique permits a higher torque density, contributing to the compactness of the machine. This configuration is suitable for several magnetic topologies, but particularly for small diameter and low pole number permanent-magnet motors of the embedded-magnet type. The proposed topology is briefly described and the theoretical aspects presented. It is shown that, from the stator point of view, this scheme behaves like a conventional motor with fictitious equivalent magnets with augmented remanent flux density and recoil permeability. A 3D finite element modeling is performed to validate the theoretical analysis permitting some additional conclusions concerning magnetic saturation. The methodology is applied to a prototype DC brushless motor constructed for research purposes, composed of a stator and two rotors of different lengths, both with embedded NdFeB magnets. Various characteristics are compared, concerning flux per pole, torque, power density and efficiency. The improvement in the performance of the axial flux concentration rotor is confirmed by experimental results, in accordance with the theoretical previsions.
机译:摘要本文利用轴向磁通量浓度的概念,为永磁电动机的磁路提出了一种不同的拓扑。通过转子长度的纵向延伸超出定子铁心,可以显着增加每极的磁通量,从而改善电机的总体性能。即使在具有铁氧体磁体的低成本电动机中,利用所提出的方案也可以容易地实现这种改进。对于稀土磁体,该技术可实现更高的扭矩密度,从而有助于提高机器的紧凑性。这种配置适用于多种磁性拓扑,但特别适用于嵌入式磁体类型的小直径和低磁极数永磁电机。简要介绍了所提出的拓扑并介绍了理论方面。从定子的角度来看,该方案的行为类似于具有虚拟等效磁体的传统电动机,具有增大的剩余磁通密度和反冲磁导率。进行了3D有限元建模以验证理论分析,从而获得了有关磁饱和的一些附加结论。该方法适用于为研究目的而构建的原型直流无刷电机,该电机由一个定子和两个不同长度的转子组成,均带有嵌入式NdFeB磁体。比较了各种特性,包括每极磁通量,转矩,功率密度和效率。根据理论规定,轴向实验结果证实了轴向磁通集中式转子性能的提高。

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