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Transient Modeling of Induction Motors considering Space Harmonics

机译:考虑空间谐波的感应电机瞬态建模

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This paper presents a transient mathematical model for induction motors based on space harmonics and its validation by finite-elements method comparison. The model is based on the computation of the magnetomotive force-wave for squirrel cage induction motors, and accounts for the geometry and physical dimensions of the stator and rotor windings. The harmonic components of the airgap field are calculated at each time-step considering the currents in the stator windings and in the rotor bars, the latter modeled as overlap of contiguous coils, as well as the rotor position. The proposed model is compared with finite elements calculations to outline differences and effects of simplifications and harmonic order. A 200kW induction motor designed for a premium electric vehicle is assumed as case-study.
机译:本文介绍了基于空间谐波的感应电机的瞬态数学模型及其通过有限元方法比较验证。该模型基于用于鼠笼式感应电动机的磁动力波的计算,并考虑定子和转子绕组的几何形状和物理尺寸。在考虑定子绕组中的电流和转子杆中的每个时间步骤时,在每个时间步骤计算气隙元件,后者被建模为连续线圈的重叠,以及转子位置。将所提出的模型与有限元计算进行比较,以概述简化和谐波顺序的差异和影响。假设为高级电动车辆设计的200kW感应电机是如此。

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