无传感器运行异步电动机定子绕组匝间短路的检测

Jean Blaise Teguia, G. Kenné, A. S. T. Kammogne, G. C. Fouokeng, Arnaud Nanfak
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摘要

这项工作提出了在实现基于有功和无功功率的模型参考自适应系统(PQ-MRAS)估计器中使用速度传感器的替代策略,以便计算感应电机(IM)的转子和定子电阻,并使用这些参数检测该电机定子的匝间短路(ITSC)故障。转子和定子电阻估计部分采用PQ-MRAS方法,其中转子角速度由互联高增益观测器(IHGO)重构。ITSC故障检测部分是通过对PQ-MRAS估计器估计的定子电阻进行求导完成的。在无速度传感器检测IM的ITSC故障的基础上,提出了一种基于正常机与故障机相电流差来确定短匝数的方法。从MATLAB/Simulink平台获得的仿真结果表明,使用互连高增益观测器的PQ-MRAS估计器与使用速度传感器的估计器的结果非常相似。转速变化和负载转矩情况下的估计误差几乎相同。定子和转子电阻的变化会影响观测器的性能,导致对转子电阻的估计较差。使用IHGO的ITSC故障检测结果与文献中使用相同的诊断方法与速度传感器的结果非常相似。
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The Detection of Inter-Turn Short Circuits in the Stator Windings of Sensorless Operating Induction Motors
This work proposes an alternative strategy to the use of a speed sensor in the implementation of active and reactive power based model reference adaptive system (PQ-MRAS) estimator in order to calculate the rotor and stator resistances of an induction motor (IM) and the use of these parameters for the detection of inter-turn short circuits (ITSC) faults in the stator of this motor. The rotor and stator resistance estimation part of the IM is performed by the PQ-MRAS method in which the rotor angular velocity is reconstructed from the interconnected high gain observer (IHGO). The ITSC fault detection part is done by the derivation of stator resistance estimated by the PQ-MRAS estimator. In addition to the speed sensorless detection of ITSC faults of the IM, an approach to determine the number of shorted turns based on the difference between the phase current of the healthy and faulty machine is proposed. Simulation results obtained from the MATLAB/Simulink platform have shown that the PQ-MRAS estimator using an interconnected high-gain observer gives very similar results to those using the speed sensor. The estimation errors in the cases of speed variation and load torque are almost identical. Variations in stator and rotor resistances influence the performance of the observer and lead to poor estimation of the rotor resistance. The results of ITSC fault detection using IHGO are very similar to the results in the literature using the same diagnostic approach with a speed sensor.
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