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Analytical model of radial forces considering mutual effects between torque and levitation current space vectors in 5-phase PM bearingless motors

机译:考虑五相永磁无轴承电动机转矩与悬浮电流空间矢量互作用的径向力解析模型

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摘要

The interaction between the current space vector producing torque and the one producing radial forces in a multiphase bearingless Surface-Mounted Permanent Magnet Synchronous Motors (SPMSM) is investigate. In fact, due to the spatial harmonic content of the stator mmf and the rotor magnets, it is necessary to consider not only the mutual effect between the magnetic field related to a single stator current space vector and the rotor magnetic field produced by the magnets, but also to take into account the coupling between the different stator current space vectors, that give non predictable effects on the radial forces distribution. The purpose of this work is to create a model allowing to predict amplitude and direction of the force produced in "bearingless" motors. This will give a powerful tool for the design of the levitation control system. An analytical model to calculate the radial forces is presented, based on the Fourier series harmonic distribution, considering all the interactions between the magnetic fields given by every stator current space vector and by rotor magnets. The accuracy of calculations is then verified by comparing the obtained results with FE analysis.
机译:研究了多相无轴承表面安装永磁同步电动机(SPMSM)中当前空间矢量产生转矩和一个产生径向力之间的相互作用。实际上,由于定子mmf和转子磁体的空间谐波含量,不仅需要考虑与单个定子电流空间矢量有关的磁场与磁体产生的转子磁场之间的相互作用,而且还要考虑不同定子电流空间矢量之间的耦合,这会给径向力分布带来不可预测的影响。这项工作的目的是创建一个模型,以预测“无轴承”电动机中产生的力的幅度和方向。这将为悬浮控制系统的设计提供强大的工具。提出了一种基于傅里叶级数谐波分布的径向力计算模型,其中考虑了每个定子电流空间矢量和转子磁体所给定的磁场之间的所有相互作用。通过将获得的结果与有限元分析进行比较,可以验证计算的准确性。

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