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Bar Diagnostics of Double Cage or Deep Bar Rotor of an Induction Motor

机译:感应电动机的双笼或深杆转子的杆诊断

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The mathematical model of a deep bar or double cage rotor of an induction motor is developed, the differential equations for which are written with respect to flux linkages in stator and rotor phase coordinates with the phase number in starting and working rotor windings equal to the number of short-circuited bars. Using measurement data from stator phase voltages and currents simulation as well as online calculations of the torque and power consumed, the most informative parameter for short-circuited rotor bars diagnostics, defined as a product of inverse stator reactive power and its time derivative, is obtained. The excess of this parameter over the inverse reactive power derivative is the criterion for the damage to rotor bars. To eliminate the influence of asymmetry in stator circuit the inverse reactive power of positive phase sequence is used. The results of detecting damage to one or more bars in rotor windings using the developed algorithm are presented. The algorithm adequacy is confirmed by simulation results and the experimental study of a phase-wound induction motor, in which different values of phase resistances have been set.
机译:建立了感应电动机的深杆或双笼式转子的数学模型,针对定子和转子相坐标中的磁链,写出了微分方程,其中转子起动和工作绕组中的相数等于该数。条短路。使用来自定子相电压和电流模拟的测量数据以及在线计算的转矩和功率消耗,可获得用于短路转子棒诊断的最有用的参数,该参数被定义为定子无功功率及其时间导数的乘积。 。该参数超过无功功率反比是转子条损坏的判据。为了消除定子电路中的不对称性影响,使用了正相序的逆无功功率。提出了使用改进算法检测转子绕组中一根或多根钢筋损坏的结果。仿真结果和相绕组感应电动机的实验研究证实了算法的适当性,在该电动机中,已经设置了不同的相电阻值。

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