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Efficiently modeling rotor eccentricity in switched relcutance machines

机译:有效地建模转子偏心在开关缓控机器中的偏心

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Practical experience has shown that parasitic effects such as rotor eccentricity can have crucial influence on the performance of switched reluctance machines. Strong eccentricity can even be a knock-out criterion as it potentially causes additional acoustic noise and increased bearing wear. Nowadays only very few publications consider simulation methods without online finite-element analysis regarding the topic of rotor eccentricity. This paper develops a look-up table based representation of rotor eccentricity which uses time-consuming finite-element analysis only in a preprocessing step. Hence, different operating points can be calculated very fast. The standard models of centric machines were extended to cover static and rotating eccentricity. It was found that the type of coil connection determines whether a flux-based or a current-based model has to be applied. The simulation results show that coils which are connected in parallel are strongly preferable to a series-wound configuration. The parallel type greatly lowers the unbalanced magnetic pull such that acoustic noise and bearing wear is limited.
机译:实践经验表明,转子偏心等寄生效应可能对切换磁阻机器的性能影响至关重要。强偏心率甚至可以是敲除标准,因为它可能导致额外的声学噪声和增加的轴承磨损。如今,只有很少的出版物考虑没有关于转子偏心术主题的在线有限元分析的模拟方法。本文开发了一种基于转子偏心的表示表格,其仅在预处理步骤中使用耗时的有限元分析。因此,可以非常快地计算不同的操作点。中心机器的标准型号延伸以覆盖静态和旋转偏心率。发现线圈连接的类型确定是否必须应用基于磁通或基于电流的模型。模拟结果表明,线圈并联连接的线圈对串联卷绕构型非常优选。平行型大大降低了不平衡的磁力拉,使得声噪声和轴承磨损有限。

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