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Investigating Current and Radial Shaft Displacement of Induction Motor Driven by Pulse-Width Modulation Inverter for Bearing Fault Detection

机译:脉宽调制逆变器驱动的异步电动机的电流和径向轴位移用于轴承故障检测

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Bearing faults account for a large majority of the faults in three-phase induction motors. Many researches have been conducted to develop a diagnosis technique for bearing faults using the motor current in an induction motor. However, the characteristics of the motor stator current and radial shaft displacement have not yet been clarified when there is a faulty bearing in an induction motor driven by a PWM inverter. The purpose of this paper is to investigate the relationship between the power spectral density of the rotational frequency band of the stator current and the radial shaft displacement of the induction motor driven by a PWM inverter. Experiments were performed with normal and abnormal motors. Then, the characteristics of the power spectral density of the rotational frequency band of the stator current are discussed based on the experimental results of the radial shaft displacement.
机译:轴承故障占三相感应电动机故障的大部分。已经进行了许多研究来开发利用感应电动机中的电动机电流的轴承故障诊断技术。但是,当由PWM逆变器驱动的感应电动机中的轴承出现故障时,电动机定子电流和径向轴位移的特性尚未弄清。本文旨在研究定子电流旋转频带的功率谱密度与PWM逆变器驱动的感应电动机的径向轴位移之间的关系。用正常和异常电动机进行实验。然后,基于径向轴位移的实验结果,讨论了定子电流旋转频带的功率谱密度的特性。

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