首页> 外文期刊>IEEE Transactions on Instrumentation and Measurement >Leakage Error Compensation in Motor Current Signature Analysis for Shaft Misalignment Detection in Submersible Pumps
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Leakage Error Compensation in Motor Current Signature Analysis for Shaft Misalignment Detection in Submersible Pumps

机译:潜水泵轴未对准检测电机电流签名分析泄漏误差补偿

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摘要

Excessive vibrations in motor operation can be a cause of premature failure in many industrial applications; therefore, effective solutions to accurately measure vibrations are required. A common approach to measure vibrations is through the motor current signature analysis, as torque oscillations produce characteristic frequency components in the current spectrum; this approach is suitable for those industrial applications where the rotating parts are not directly accessible for sensor installation, e.g., electrical submersible pumps which are usually deep underground or underwater. The detection of vibrations from the current spectrum is particularly challenging in high-power motors, where the ratio between the amplitude of the sideband spectral components caused by vibrations and the amplitude of the fundamental component is so small that the former is likely to be masked by the spectral leakage of the latter when a traditional Fourier analysis is employed. This article proposes a method to improve the sideband amplitude measurement by compensating for the leakage error in the current spectrum. The method is applied, in particular, to the detection of vibrations caused by a shaft angular misalignment, but it can be applied to other types of vibrations as well. The method is first illustrated through simulation results and then experimentally validated on a smaller-scale motor. Results confirm the ability of the proposed method to accurately measure the sideband amplitude even when it was originally completely hidden by the spectral leakage of the fundamental component.
机译:电机运行过多的振动可能是许多工业应用中过早失效的原因;因此,需要精确测量振动的有效解决方案。测量振动的常用方法是通过电动机电流特征分析,因为扭矩振荡产生当前频谱中的特征频率分量;这种方法适用于那些工业应用,其中旋转部件不可用于传感器安装,例如,电气潜水泵,通常是地下或水下的。从电流频谱的检测在高电动机中尤其具有挑战性,其中由振动引起的边带谱分量的幅度与基本部件的幅度之间的比率如此之小,以至于前者可能被屏蔽采用传统傅里叶分析时,后者的光谱泄漏。本文提出了一种通过补偿当前频谱中的泄漏误差来改善边带幅度测量的方法。特别地,该方法尤其应用于由轴角度未对准引起的振动检测,但也可以应用于其他类型的振动。首先通过仿真结果说明该方法,然后在较小刻度的电动机上进行实验验证。结果确认所提出的方法能够准确测量边带幅度的能力,即使它最初是完全隐藏的基本组件的光谱泄漏。

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