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Radial electro-magnetic field analysis of induction motor under faulty condition using FEM

机译:基于有限元法的故障条件下感应电动机的径向电磁场分析

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In industrial applications, condition monitoring of induction motors (IM) is an inevitable process. Various methods are adopted to detect different faults in induction motors. In this paper, a simulation study on the flux distribution of the motor under faulty conditions is made using Finite Element Method (FEM). The effect of radial flux density in the air gap is analyzed under steady-state and phase to phase short circuit fault conditions. FEM considers the mapping of stator winding and rotor bar distribution physically, offering a more accurate fault prediction compared to other simulation tools. The analysis is carried out for the IM when directly connected to the mains and also when fed from a pulse width modulated (PWM) voltage source inverter in open loop. ANSYS Maxwell Finite element analysis (FEA) software is used for designing the IM, and Co-simulated using ANSYS Simplorer for implementation of open-loop PWM inverter drive. In Induction motors, during fault conditions, the radial flux components cause torque components giving rise to magnetic noise.
机译:在工业应用中,感应电动机(IM)的状态监视是不可避免的过程。采用各种方法来检测感应电动机中的不同故障。本文使用有限元方法(FEM)对故障条件下电动机的磁通分布进行了仿真研究。分析了稳态和相间短路故障条件下气隙中径向通量密度的影响。 FEM物理上考虑了定子绕组和转子条分布的映射,与其他仿真工具相比,可提供更准确的故障预测。直接连接到市电时以及从开环的脉宽调制(PWM)电压源逆变器供电时,都会对IM进行分析。 ANSYS Maxwell有限元分析(FEA)软件用于设计IM,并使用ANSYS Simplorer进行协同仿真以实现开环PWM逆变器驱动。在感应电动机中,在故障情况下,径向磁通分量会导致转矩分量,从而产生磁噪声。

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