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Space-harmonics Modeling of an Axial-flux Permanent-magnet Machine

机译:轴向磁通永磁机的空间 - 谐波建模

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摘要

The content of space harmonics in axial-flux permanent-magnet machines (AFPMMs) is an important concern to the machine designer due to its impact on the performance. In AFPMMs, the harmonics are related to the flux-density and the MMF distributions in the air gap, which are mainly determined by the permanent- magnet excitation. This paper proposes two different approaches to study the flux density in the air gap. The finite-element and analytical method are jointly developed in order to model, compare and optimize the flux density waveforms. Many optimization methods have been proposed in order to optimize the design of permanent magnet machines. In this paper, the authors investigate the optimal permanent-magnet design in order to minimize the space-harmonics distribution using the sequential quadratic programming (SQP) optimization algorithm. By selecting the appropriate PM shape and size, it is possible to remove the undesirable harmonics. Using the SQP, the permanent-magnet shape is optimized, and the harmonics content is notably reduced. The optimal solutions given by the analytical and finite element model are then validate.
机译:轴向通量永磁机(AFPMMS)的空间谐波含量是机器设计者的重要关注因其对性能的影响。在AFPMMS中,谐波与气隙中的磁通密度和MMF分布有关,其主要由永久磁体激发决定。本文提出了两种不同的方法来研究气隙中的磁通密度。有限元和分析方法是共同开发的,以便模拟,比较和优化磁通密度波形。已经提出了许多优化方法,以优化永磁机的设计。在本文中,作者研究了最佳的永磁体设计,以便使用顺序二次编程(SQP)优化算法最小化空间谐波分布。通过选择适当的PM形状和尺寸,可以去除不期望的谐波。使用SQP,优化永磁形状,谐波内容显着降低。然后验证由分析和有限元模型给出的最佳解决方案。

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