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Space-time representation of the main air gap flux of a three phase squirrel cage induction motor and its application to detect eccentricity

机译:三相鼠笼式感应电动机主气隙通量的时空表示及其在偏心检测中的应用

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The stator current and main air gap electromagnetic flux of an induction motor produces different types of harmonics even when they are run by balanced three-phase supply. A lot of these harmonics are created due to the spatial positions as well as slot structure of stator and rotor and thus known as space harmonics. If the supply is imbalanced or the motor is fed from an inverter, which is the most likely case in industrial environment, even more harmonics are created in time domain. As unwanted as these harmonics may be, they have a good use for condition monitoring of the motor. The harmonics show a certain behavior for a healthy motor and deviations from those behavior may lead to detect a fault as it happens. Most of the existing electrical techniques of condition monitoring are based on the time harmonics analysis of the stator current and/or leakage flux. We propose to analyze the space harmonics of the main air gap electromagnetic flux along with the time domain analysis to detect faults. To this aim, we present a model to analyze the space harmonics of the main air gap flux of a healthy as well as an eccentric induction motor in this paper. We also propose a method to detect and differentiate among different types of eccentricity, i.e. static, dynamic and mixed eccentricity by analyzing the main air gap flux with respect to both stator and rotor. Our presented results show that the space harmonics analysis can be used to detect and differentiate between different types of eccentricity unambiguously.
机译:感应电动机的定子电流和主气隙电磁通量即使通过平衡的三相电源运行,也会产生不同类型的谐波。这些谐波中的很多是由于定子和转子的空间位置以及缝隙结构而产生的,因此被称为空间谐波。如果电源不平衡或电动机由逆变器供电(这在工业环境中是最有可能的情况),则在时域中会产生更多的谐波。尽管这些谐波可能是多余的,但它们可很好地用于电动机状态监测。谐波显示出正常电动机的某种行为,并且偏离这些行为可能会导致在故障发生时进行检测。现有的状态监测的大多数电气技术都是基于对定子电流和/或漏磁通的时间谐波分析。我们建议对主要气隙电磁通量的空间谐波进行分析,并进行时域分析以检测故障。为此,本文提出了一个模型来分析健康和偏心感应电动机的主气隙通量的空间谐波。我们还提出了一种通过分析相对于定子和转子的主要气隙通量来检测和区分不同类型的偏心率(即静态,动态和混合偏心率)的方法。我们提出的结果表明,空间谐波分析可用于检测和区分不同类型的偏心率。

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