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Comparison between vibration and stator current analysis for the detection of bearing faults in asynchronous drives

机译:振动和定子电流分析在异步驱动器轴承故障检测中的比较

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摘要

This study deals with the application of vibration and motor current spectral analysis for the monitoring of rolling bearings damage in asynchronous drives. Vibration measurement is widely used to detect faulty bearings operations. However, this approach is expensive and cannot always be performed, while electrical quantities such as the machine stator current are often already measured for control and detection purposes. Signal processing methods and global indicators associated with bearing fault detection of vibration measurements are recalled. Compared to these methods, an automatic detector based on vibration spectral energy extraction is then proposed and its performances are discussed. Moreover, load torque measurements underlines that bearing faults also induce mechanical load torque oscillations. Therefore a theoretical stator current model in case of load torque oscillations is used to demonstrate the presence of phase modulation (PM) on stator currents. Frequency behaviour of the related sideband components is strongly investigated for monitoring purposes. Thus, a fault detector using the extraction of spectral energy of stator current is proposed to detect damaged bearings. This detector is then compared to the one defined on vibration signals.
机译:这项研究涉及振动和电动机电流谱分析在异步驱动器中滚动轴承损坏监测中的应用。振动测量被广泛用于检测轴承故障。然而,这种方法很昂贵并且不能总是执行,而通常已经测量了诸如电机定子电流之类的电量以用于控制和检测目的。召回了与振动测量的轴承故障检测相关的信号处理方法和全局指示器。与这些方法相比,提出了一种基于振动谱能量提取的自动检测仪,并对其性能进行了讨论。此外,负载扭矩测量结果表明,轴承故障也会引起机械负载扭矩振荡。因此,在负载转矩振荡的情况下,理论上的定子电流模型用于证明定子电流上存在相位调制(PM)。出于监视目的,强烈研究了相关边带组件的频率行为。因此,提出了一种利用定子电流的频谱能量提取的故障检测器来检测损坏的轴承。然后将该检测器与振动信号上定义的检测器进行比较。

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