Design of Dual Rotor Axial Flux Permanent Magnet Generators with Ferrite and Rare-Earth Magnets

Tohid Asefi, J. Faiz, M. A. Khan
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引用次数: 4

Abstract

This paper discusses dual rotor axial flux machines with surface mounted and spoke type ferrite permanent magnets (PMs) with concentrated windings; they are introduced as alternatives to a generator with surface mounted Nd-Fe-B magnets which is analyzed in [10]. The output power, voltage, speed and air gap clearance for all the generators are identical. The machine designs are optimized for minimum mass using a population-based algorithm, assuming the same efficiency as the Nd-Fe-B machine. A finite element analysis (FEA) is applied to predict the performance, electromotive force, developed torque, cogging torque, no load losses, leakage flux and efficiency of both ferrite generators and that of the Nd-Fe-B generator. To minimize cogging torque, different rotor pole topologies and different pole arc to pole pitch ratios are investigated by means of 3D FEA. It was found that the surface mounted Ferrite generator topology is unable to develop the nominal electromagnetic torque, and has higher torque ripple and is heavier than the spoke type machine. Furthermore, it was shown that the spoke type Ferrite PM generator has favorable performance and could be an alternative to rare-earth PM generators, particularly in wind energy applications. Finally, the analytical and numerical results are verified using experimental results.
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铁氧体和稀土双转子轴向磁通永磁发电机的设计
本文讨论了面贴式和辐条式集中绕组铁氧体永磁体双转子轴向磁通机;它们被介绍为[10]中分析的表面安装Nd-Fe-B磁铁的发电机的替代品。所有发电机的输出功率、电压、转速和气隙间隙都是相同的。机器设计使用基于种群的算法进行最小质量优化,假设与Nd-Fe-B机器相同的效率。采用有限元分析(FEA)对铁氧体发电机和Nd-Fe-B发电机的性能、电动势、发展转矩、齿槽转矩、空载损耗、漏磁通和效率进行了预测。为了减小齿槽转矩,采用三维有限元分析方法研究了不同的转子极拓扑结构和不同的极弧/极节比。研究发现,表面贴装铁氧体发电机拓扑结构无法产生公称电磁转矩,且转矩脉动较大,且比轮辐式电机更重。此外,研究表明,轮辐式铁氧体永磁发电机具有良好的性能,可以替代稀土永磁发电机,特别是在风能应用中。最后,用实验结果对解析和数值结果进行了验证。
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