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Design of Variable-Flux Permanent-Magnet Machines Using Alnico Magnets

机译:基于Alnico磁铁的可变磁通永磁电机的设计。

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This paper proposes a novel design for variable-flux machines with Alnico magnets. The proposed design uses tangentially magnetized magnets to achieve high air-gap flux density and to avoid demagnetization by the armature field. Barriers are also inserted in the rotor to limit the armature flux and to allow the machine to utilize both reluctance and magnet torque components. An analytical procedure is first applied to obtain the initial machine design parameters. Then, several modifications are applied to the stator and rotor designs through finite-element analysis (FEA) simulations to improve machine efficiency and torque density. A prototype of the proposed design is built, and the experimental results are in good correlation with the FEA simulations, confirming the validity of the proposed machine design concept.
机译:本文提出了一种具有Alnico磁铁的可变磁通机的新颖设计。所提出的设计使用切向磁化的磁体来实现高的气隙磁通密度并避免电枢磁场引起的退磁。障碍物也插入转子中,以限制电枢磁通量,并允许电机利用磁阻和磁矩分量。首先应用分析程序以获得初始机器设计参数。然后,通过有限元分析(FEA)模拟对定子和转子设计进行了多种修改,以提高电机效率和转矩密度。建立了所提出的设计的原型,并且实验结果与FEA仿真具有良好的相关性,从而证实了所提出的机器设计概念的有效性。

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