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Influence of the rotor eccentricity on the torque of a cage induction machine

机译:转子偏心距对笼式感应电机转矩的影响

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摘要

The non-uniform air gap in an electrical machine caused by rotor eccentricity creates an asymmetrical flux-density distribution in the air gap. This can affect the nominal torque produced by the machine. Eccentricity also produces forces that act on the rotor which may also have an effect on the torque. Thus, it is important to know how the torque of the machine behaves. In this paper, the torque of a cage induction machine is studied when the machine has dynamic eccentricity. The study is performed using the finite element method and a magnetic vector potential formulation. The torque is calculated by the method of energy balance. The harmonic components of the torque are also analyzed. The results show that the machine under eccentricity does not exhibit the same torque as a normal healthy machine. The harmonic components around the first principal slot harmonic is most affected.
机译:由转子偏心引起的电机中不均匀的气隙会在气隙中产生不对称的磁通密度分布。这会影响机器产生的额定转矩。偏心也产生作用在转子上的力,该力也可能对转矩产生影响。因此,重要的是要知道机器的扭矩如何运转。本文研究了笼形感应电机动态偏心时的转矩。该研究是使用有限元方法和磁矢量势公式进行的。扭矩通过能量平衡方法计算。还分析了转矩的谐波分量。结果表明,在偏心状态下的机器没有表现出与正常健康机器相同的扭矩。第一次主槽谐波周围的谐波分量受影响最大。

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