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首页> 外文期刊>Electric Power Applications, IET >Modified winding function-based model of squirrel cage induction motor for fault diagnostics
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Modified winding function-based model of squirrel cage induction motor for fault diagnostics

机译:基于修改的绕组函数基灰鼠笼感应电动机的故障诊断

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摘要

This study presents the modelling and simulation of a squirrel cage induction motor using a modified winding function-based method. The aim of the model is to compute the motor's performance parameters, which are similar to the results obtained using the finite element method (FEM) with a considerably reduced simulation time. This fact can make this model good for iterations based optimisation and fault diagnostic algorithms. For this purpose, the actual stator and rotor winding functions and the air gap, with the inclusion of rotor and stator slots, are defined as conditional expressions. The resistances and various inductances are calculated with stepping rotor, saved in lookup tables and are used to calculate speed, torque, and currents of the motor. For the validation of the model, the frequency spectrum of stator current is compared with the one calculated using FEM and measurements taken in the laboratory setup under healthy and broken rotor bar conditions.
机译:本研究介绍了使用基于改进的绕组功能的方法的灰鼠笼感应电动机的建模和仿真。该模型的目的是计算电机的性能参数,其类似于使用有限元方法(FEM)获得的结果,其模拟时间显着降低。这一事实可以使该模型适用于基于迭代的优化和故障诊断算法。为此目的,实际定子和转子绕组功能和空气间隙具有包含转子和定子槽,被定义为条件表达。使用步进转子计算电阻和各种电感,以查找表保存,用于计算电机的速度,扭矩和电流。对于模型的验证,将定子电流的频谱与使用有限元和在健康和破碎的转子条条件下的实验室设置中进行的测量进行比较。

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