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Numerical modelling of the rotor movement in a permanent-magnet stepper motor

机译:永磁步进电机转子运动的数值模拟

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This study deals with predicting the dynamic behaviour of the rotor in a claw-poled, permanent-magnet (PM) stepper motor. The finite element method (FEM) model of a prototype stepper is used to calculate the magnetic forces on the rotor, where the PM is modelled with an altered geometry approach. This altered geometry helps achieving a realistic magnetic flux density profile and direct PM material property input. The obtained forces are used in the following analysis as the excitation, to simulate the rotor's rotational and also axial movements with the help of proposed system of equations. To validate the introduced modelling approach, a measurement of the rotational and axial movement was performed on a motor with the same geometry and material properties. The results of the simulated movement are in good agreement with the experimental data for the tested motor.
机译:这项研究涉及预测爪极式永磁(PM)步进电机中转子的动态行为。原型步进器的有限元方法(FEM)模型用于计算转子上的磁力,其中通过更改的几何方法对PM进行建模。这种改变的几何形状有助于实现逼真的磁通量密度分布图和直接的PM材料属性输入。在下面的分析中,将获得的力用作激励,借助所提出的方程组来模拟转子的旋转以及轴向运动。为了验证引入的建模方法,在具有相同几何形状和材料属性的电动机上进行了旋转和轴向运动的测量。模拟运动的结果与被测电机的实验数据非常吻合。

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