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A complex spectral analysis of the stator current dedicated to the defects monitoring of squirrel cage induction motors

机译:一种专用于灰鼠笼感应电动机缺陷监测的定子电流的复杂光谱分析

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Nowadays, the induction motor is an important element in industrial process in terms of safety and efficiency. In order to limit the cost induced by a defect, we have to make an early detection. Consequently, the earlier incipient faults will be detected the cheaper remediable faults will be. So, one of the widespread method to monitor the process is the spectral analysis of the stator current. Usually, the real Fast Fourier Transform (FFT) is used. Despite its waning achievement in regards of on-line methods, the complex FFT gives more information about the healthy state of the motor. So, a comparison of these two approaches in this paper will allow the users to better conclude or not to failure of the induction motor. Moreover, a sliding version of the Discret Fourier Transform is conceivable even if the signal to analyse is real or complex. This technique is highly recommendable when updated spectrum is necessary at each sampling time. Experimental results show the efficiency of the complex FFT in comparison to the classical one.
机译:如今,感应电机是在安全性和效率方面的工业过程中的重要因素。为了限制缺陷诱导的成本,我们必须提前检测。因此,将检测到之前的初期的故障将是更便宜的可弥补故障。因此,监视该过程的广泛方法之一是定子电流的光谱分析。通常,使用真实的快速傅里叶变换(FFT)。尽管在在线方法方面取得了成就,但复杂的FFT提供了有关电机健康状态的更多信息。因此,本文中这两种方法的比较将使用户更好地得出或不对感应电动机失效。此外,即使分析信号是真实的或复杂的信号,也可以想到离散傅里叶变换的滑动版本。当在每个采样时间需要更新的频谱时,该技术非常重要。实验结果表明,与古典上的复杂FFT的效率。

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