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Modelling of high torque density switched reluctance motors with mutual coupling

机译:具有互耦的高转矩密度开关磁阻电机建模

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High torque density switched reluctance motors (SRM) have a stator yoke thickness as small as possible. This can lead to strong mutual coupling between the flux paths of the motor phases and thus an isolated modelling of each motor phase of the SRM is imprecise. In this paper a method is suggested which models the resulting motor torque and current dynamics directly from the flux linkages with no need of inductances. That allows an easy calculation from measurement or simulation results. The model is validated by 2D finite element analysis. With a proper method to measure the flux linkage characteristics it is sufficient to calculate half of an electrical period to get all information to model the system behavior, even for both long and short flux path phase connection sequences.
机译:高转矩密度开关磁阻电机(SRM)的定子磁轭厚度尽可能小。这可能导致电机各相的磁通路径之间发生强烈的相互耦合,因此,对SRM的每个电机相进行孤立的建模是不精确的。在本文中,提出了一种方法,该方法无需电感即可直接从磁通链中模拟电动机转矩和电流动态特性。这样可以轻松地根据测量或仿真结果进行计算。该模型通过2D有限元分析进行了验证。使用一种合适的方法来测量磁链特性,足以计算电气周期的一半,以获取所有信息来对系统行为进行建模,即使对于长磁通路径和短磁通路径相连接序列而言也是如此。

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