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Rotordynamic Simulation Method of Induction Motors Including the Effects of Unbalanced Magnetic Pull

机译:电动电动机的旋转动力学仿真方法,包括不平衡磁力拉的影响

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摘要

This paper presents an optimal method for rotordynamic simulation of induction motors, including the effects of unbalanced magnetic pull (UMP). The developed simulation method containing the UMP model is simple but still accurate for the actual design process of induction motors. The UMP model is simplified by using the magnetizing current without calculation of the rotor current. The effects of the slot opening and saturation are initially incorporated into the model by using the Carter factor. To improve the accuracy of the model, the magnetizing current is calculated by the finite element analysis (FEA), and the proposed correction factor is also built into the model. Moreover, mixed eccentricity is modeled and applied to the time step rotordynamic simulation for considering the actual rotor eccentricity condition. Based on the developed UMP and eccentricity models, rotordynamic simulation methods within the induction motor design process are proposed and tested in a standard four-pole induction motor. The simulation results show that inclusion of the UMP force reduces the critical speeds and generates electromagnetic excitation. The study further shows that the effects of UMP vary with a change in static eccentricity, dynamic eccentricity, slip, and bearing stiffness. Finally, based on the results, a utilization plan of the developed methods is proposed.
机译:本文介绍了感应电动机旋转动力学模拟的最佳方法,包括不平衡磁力拉(UMP)的影响。含有UMP型号的开发仿真方法简单但仍然准确的感应电动机的实际设计过程。通过使用磁化电流来简化UMP模型,而无需计算转子电流。槽开口和饱和的效果最初通过使用卡特因子并入到模型中。为了提高模型的准确性,通过有限元分析(FEA)计算磁化电流,并且所提出的校正因子也被建立在模型中。此外,模拟混合偏心率并应用于考虑实际转子偏心条件的时间步长旋转性仿真。基于发达的UMP和偏心型模型,在标准的四极感应电动机中提出并测试了感应电动机设计过程中的旋转动力仿真方法。仿真结果表明,包含UMP力的包含降低了临界速度并产生电磁励磁。该研究进一步表明,UMP的影响随着静偏心,动态偏心,滑动和轴承刚度的变化而变化。最后,基于结果,提出了开发方法的利用计划。

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