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Comparative electrical design of radial- and axial-flux permanent magnet synchronous machines under space limitation

机译:空间限制下径向和轴向磁通永磁同步电机的比较电气设计

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Comparative electrical designs of radial- and axial-flux permanent magnet machines (AFPMs) under space limitation are described in this paper. The target machines are conventional radial-flux machines and axial-flux machines with a single stator between two rotors. An analytical equation for designing axial-flux machines is derived considering given dimensions. The torque densities are calculated under dimensional limitations. From calculated results, the torque density of axial-flux machines depends on axial lengths, though that of radial-flux machines is independent of axial lengths. The back yoke thickness and the stator slot height of axial-flux machines are included in the axial length. Axial-flux machines have the possibility of having higher torque density than radial-flux machines if the windings are filled in the slot at a rate proportional to the increase of the slot space. However, the optimal axial length of axial-flux machines depends on the electrical loading because of the magnetic saturation of the stator teeth.
机译:本文介绍了空间受限的径向和轴向磁通永磁电机(AFPM)的比较电气设计。目标机器是常规的径向磁通机和轴向磁通机,两个转子之间有单个定子。考虑到给定的尺寸,得出了用于设计轴向磁通机的解析方程。扭矩密度是在尺寸限制下计算的。根据计算结果,轴向通量机的转矩密度取决于轴向长度,而径向通量机的转矩密度与轴向长度无关。轴向通量电机的后轭铁厚度和定子槽高度包括在轴向长度中。如果绕组以与槽空间增加成比例的比率填充在槽中,则轴通机可能具有比径向通机更高的转矩密度。但是,由于定子齿的磁饱和,轴向磁通电机的最佳轴向长度取决于电负载。

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