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Rotor cage faults detection in induction motors by Motor Current Demodulation Analysis

机译:通过电机电流解调分析,转子笼式故障检测感应电机

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Dynamic rotor faults of induction motors, mainly broken or cracked rotor bars and dynamic rotor eccentricity, cause stator currents modulation. The detailed motor current analysis revealed meaningful phase modulation and its relation to amplitude modulation at increasing motor load and inertia load. It is shown, that by increasing motor load mainly phase modulation increases and by increasing inertia load a phase shift between both modulations currents changes. This influences the MCSA spectral sidebands amplitudes and therefore it is not possible to determine the real fault size. The paper introduces a new method of motor current amplitude demodulation analysis -MCDA and shows that spectral amplitudes almost do not change with increasing load and inertia load. Moreover MCDA directly analyzes fault signals without great motor stator current and increases resolution both in amplitude and frequency domains, facilitates and precises evaluation. Two demodulation methods using Hilbert transform and space transform are introduced.
机译:感应电动机的动态转子故障,主要破碎或破裂的转子杆和动态转子偏心,导致定子电流调制。详细的电动机电流分析显示了在增加电动机负荷和惯性负载时对振幅调制的有意义相位调制及其关系。示出了,通过增加电动机负载,主要是相位调制增加并且通过增加惯性加载两个调制之间的相移电流变化。这影响MCSA光谱边带幅度,因此不可能确定真实的故障尺寸。本文介绍了一种新的电动机电流幅度解调分析方法-MCDA,并表示频谱幅度几乎不会随着负载和惯性负载而改变。此外,MCDA直接分析故障信号,无需极大的电机定子电流,并在幅度和频率域中增加分辨率,促进和精确评估。介绍了使用Hilbert变换和空间变换的两种解调方法。

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