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Diagnosis of airgap eccentricity fault in the inverter driven induction motor drives by transformative techniques

机译:利用变换技术诊断变频器驱动感应电动机驱动器气隙偏心故障

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Summary In the present paper, the airgap eccentricity fault of the induction motor has been diagnosed by digital signal processing transformative techniques in the inverter driven induction motor drives. The airgap eccentricity fault has been diagnosed in the transient condition by time domain as well as time-frequency domain techniques with the help of a proposed dynamic simulation model. In the past, many signal processing techniques had been used for various induction motor fault detection purpose such as fast Fourier transform, Hilbert transform, short term Fourier transform, etc. But, all techniques faced some sort of disadvantages. Therefore, in this paper, all shortcomings of the previous used signal processing techniques have been solved by newly wavelet transform's approximation signal. The low frequency approximation signal has been used to diagnose the eccentricity fault in the transient condition. Therefore, early fault diagnosis of the motor is possible and averted the motor before reaching in the ruinous conditions. As a result, the industries may save large revenues and unexpected failure conditions. The obtained results clearly demonstrate that the developed diagnostic technique may reliably separate airgap eccentricity fault in many stages.
机译:总结在本文中,已经通过变频器驱动的感应电动机驱动器中的数字信号处理转换技术诊断了感应电动机的气隙偏心故障。借助提出的动态仿真模型,已通过时域和时频域技术在瞬态条件下对气隙偏心故障进行了诊断。过去,许多信号处理技术已经用于各种感应电动机故障检测目的,例如快速傅立叶变换,希尔伯特变换,短期傅立叶变换等。但是,所有技术都面临着一些缺点。因此,本文通过新的小波变换的逼近信号解决了以前使用的信号处理技术的所有缺点。低频逼近信号已用于诊断瞬态条件下的偏心故障。因此,可以对电动机进行早期故障诊断,并在达到破坏性状况之前将电动机避开。结果,这些行业可以节省大量的收入和意外的故障情况。获得的结果清楚地表明,开发的诊断技术可以在许多阶段可靠地分离气隙偏心故障。

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