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Distinguishing Load Torque Oscillations and Eccentricity Faults in Induction Motors Using Stator Current Wigner Distributions

机译:利用定子电流Wigner分布来区分感应电动机的负载转矩振荡和偏心故障

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摘要

This paper proposes a novel diagnosis method for detection and discrimination of two typical mechanical failures in induction motors by stator current analysis: load torque oscillations and dynamic rotor eccentricity. A theoretical analysis shows that each fault modulates the stator current in a different way: torque oscillations lead to stator current phase modulation, whereas rotor eccentricities produce stator current amplitude modulation. The use of traditional current spectrum analysis involves identical frequency signatures with the two fault types. A time–frequency analysis of the stator current with the Wigner distribution leads to different fault signatures that can be used for a more accurate diagnosis. The theoretical considerations and the proposed diagnosis techniques are validated on experimental signals.
机译:本文提出了一种新颖的诊断方法,该方法可以通过定子电流分析检测和识别感应电动机中的两种典型机械故障:负载转矩振荡和动态转子偏心率。理论分析表明,每个故障都以不同的方式调制定子电流:转矩振荡导致定子电流相位调制,而转子偏心率导致定子电流幅度调制。传统电流频谱分析的使用涉及两种故障类型的相同频率特征。对具有Wigner分布的定子电流进行时频分析会导致不同的故障征兆,这些征兆可用于更准确的诊断。理论上的考虑和提出的诊断技术在实验信号上得到验证。

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