感应电动机时变载荷与转子保持架故障的判别

A. Mabrouk, S. Zouzou, M. Sahraoui, S. Khelif
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引用次数: 10

摘要

电机诊断作为一种新的数据处理技术,已成为电机领域越来越重要的研究课题。电机定子电流分析(MCSA)是检测断线的常用方法。在一些工业应用中,电机受到低频负载转矩变化的影响,其影响类似于电流频谱中的转子故障,并且诊断过程的结果可能不明确。区分异步电动机转子保持架故障与振荡负载的影响是必须考虑的问题。本文研究了基于有功和无功功率特征分析的三相鼠笼式异步电动机转子断条与机械负载振荡的区别。这种方法很有吸引力,因为它不需要中断操作系统。采用有限元法进行动态仿真,由于考虑了卷筒的几何形状和卷绕布局,仿真结果比其他模型更精确。计算机仿真和室内实验结果表明,该方法对正确区分转子断条和负载振荡具有重要意义和有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Discriminating time-varying loads and rotor cage fault in induction motors
Diagnosis of electrical machines are becoming more and more important issues in the field of electrical machines as new data processing technique. Motor Current Stator Analysis (MCSA) are usually used to detect the broken bars. In several industrial applications, the motor is subjected to load torque variations of low frequencies, which have effects similar to rotor faults in the current spectrum and result of diagnostic procedure may be ambigues. Discriminating rotor cage fault from oscillating load effects in Induction motors must be considered. In this paper, we present a study based on the application of the active and reactive power signature analyses for discriminating broken rotor bars from mechanical load oscillation effects in operating three-phase squirrel cage induction motors. This method is attractive because it does not need to interrupt the operating system. Finite element method was used to perform dynamical simulation, which leads to more precise results than other models, as the reel geometry and winding layout of the machine are used. The computer simulations and laboratory experiments results show the interest and the efficiency of this technique for the correct distinction between broken rotor bars and load oscillations.
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