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Combined effects of static and dynamic eccentricity on airgap flux waves and the application of current monitoring to detect dynamic eccentricity in 3-phase induction motors

机译:静电和动态偏心对气隙通量波的综合影响及电流监测在三相感应电动机中检测动态偏心的应用

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Simple theory is put forward to show that when both static and dynamic eccentricity are present then side band currents with frequencies f/sub s/ /spl plusmn/ f/sub r/ are induced into the stator windings of three-phase induction motors. This is demonstrated experimentally and it is shown that the degree of static and dynamic eccentricity and also the motor load has a great influence on the magnitude of these side-band currents. Further computational work is necessary to be able to predict these side band currents with the aim of quantifying the individual static and dynamic eccentricity components by comparison of the measured side-band magnitudes with predictions at several load points. It is shown that whilst static eccentricity causes an increase in the rotating force vibration usually associated with dynamic eccentricity, it is a very small increase. Hence, this technique may be used in conjunction with side-band current monitoring to assess any increase in rotor eccentricity in large induction machines where offline time of the machine has to be kept to a minimum and internal physical examination is difficult. In addition, the airgap permeance expression is an approximation; further attention to the analysis may yield more harmonic current components suitable for condition monitoring.
机译:提出简单的理论表明,当存在静态和动态偏心率时,当时频率f / sub s / spl plusmn / f / sub r /被引入三相感应电动机的定子绕组。实验证明了这一点,结果表明,静态和动态偏心的程度以及电动机负荷对这些侧频电流的大小产生了很大的影响。需要进一步的计算工作,以便能够预测这些侧频电流,其目的是通过在几个负载点处的预测的测量的侧带幅度进行比较来定量各个静态和动态偏心分量。结果表明,静态偏心率导致通常与动态偏心的旋转力振动增加,这是一个非常小的增加。因此,该技术可以与侧带电流监测结合使用,以评估大型感应机器中的转子偏心率的任何增加,其中机器的离线时间必须保持在最小和内部物理检查。此外,气隙渗透表达是近似值;进一步关注分析可以产生适合于条件监测的更多谐波电流分量。

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