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An Improved Model for the Back-EMF and Cogging Torque Characteristics of a Novel Axial Flux Permanent Magnet Synchronous Machine With a Segmental Laminated Stator

机译:新型分段分段定子轴向磁通永磁同步电机反电动势和齿槽转矩特性的改进模型

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摘要

An improved model for the back-electromagnetic-force (back-EMF) and cogging torque characteristics of a novel axial flux permanent magnet (AFPM) synchronous machine with a segmental laminated stator is presented. Based on a 3-D finite-element analysis (FEA) modeling approach that takes into the anisotropic properties of the machine's laminated cores, the proposed model provides superior performance prediction to existing isotropic models, in which lamination effects are not considered. An anisotropic model has been developed to predict the back-EMF and cogging torque of an existing prototype AFPM machine with optimized rotor magnets. Experimental results of the AFPM machine are compared against the results from the FEA models based on anisotropic and isotropic modeling, respectively. The results show that anisotropic modeling provides more accurate performance prediction of the AFPM machine with laminated cores.
机译:提出了一种新型的分段分段定子轴向磁通永磁同步电机的反电磁力和齿槽转矩特性的改进模型。基于考虑了机器叠片铁心各向异性的3-D有限元分析(FEA)建模方法,该模型提供了优于不考虑叠片效应的现有各向同性模型的性能预测。已经开发出各向异性模型来预测具有优化转子磁体的现有原型AFPM机器的反电动势和齿槽转矩。将AFPM机器的实验结果与分别基于各向异性和各向同性建模的FEA模型的结果进行比较。结果表明,各向异性建模可以为叠片式AFPM机器提供更准确的性能预测。

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