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Characterization of axially laminated anisotropic-rotor synchronous reluctance motors

机译:轴向叠片各向异性转子同步磁阻电动机的特性

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摘要

The effects of accounting for material anisotropy on the energy performance characteristics of the axially laminated anisotropic (ALA) rotor synchronous reluctance motor (SynRM) are presented. These effects are evaluated from the simulation of indirectly coupled magnetic field-electric circuit models which fully account for magnetic saturation and space harmonics, to a time variant state space model describing the SynRM drive system. Furthermore, the simulation method fully accounts for strong "material" and "structural" anisotropy exhibited in the curved flux barrier regions of the rotor ALA-rotor SynRM. The simulation results are validated by direct measurement of inductances and energy conversion performance of a 100 kW prototype ALA-rotor synchronous reluctance machine.
机译:提出了考虑材料各向异性对轴向叠片各向异性(ALA)转子同步磁阻电机(SynRM)的能量性能特性的影响。从完全考虑了磁饱和和空间谐波的间接耦合磁场-电路模型的仿真,到描述SynRM驱动系统的时变状态空间模型,对这些影响进行了评估。此外,该模拟方法充分考虑了在转子ALA-转子SynRM的弯曲磁通势垒区域中表现出的强烈的“材料”和“结构”各向异性。通过直接测量100 kW原型ALA转子同步磁阻电机的电感和能量转换性能来验证仿真结果。

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