铁路牵引鼠笼式异步电动机转子断条及MCSA诊断。第二部分:故障相关电流边带的理论安排

C. Boccaletti, C. Bruzzese, O. Honorati, E. Santini
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引用次数: 27

摘要

在一篇配套论文(第一部分)中,通过模拟整个系统(变流器+电机)并分析电流边带的频率和幅值,研究了高速铁路牵引传动中使用的1.13 MW异步电动机的棒断,该系统适用于各种负载(主动和惯性)以及故障严重程度的增加。发现故障可以用(1-2s)f边带表征,但结果随负载转矩和驱动惯量的变化而变化。其他边带似乎不太依赖于这些干扰,如(5+2s)f。不幸的是,没有任何作品提出关于侧带的简单而通用的公式。本文以第一部分为例,给出了转子故障相关边带频率和幅值的计算和预测的理论公式,旨在获得用于诊断目的(MCSA故障严重程度评估)的关系。在考虑空间谐波的情况下,采用多相对称分量进行分解。给出了(1-2s)f边带振幅的公式,可扩展到许多其他边带。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rotor bars breakage in railway traction squirrel cage induction motors and diagnosis by MCSA technique Part II : Theoretical arrangements for fault-related current sidebands
In a companion paper (Part I) the bar breakages for a 1.13 MW induction motor used in high speed railway traction drives were studied, by simulating the whole system (converter + motor) and by analyzing frequencies and amplitudes of current sidebands, for various loads (both active and inertial) and with increasing fault severity. It was recognized that faults can be characterized by (1-2s)f sideband, but results vary with load torque and drive inertia. Other sidebands appear less dependent from these disturbs, like (5+2s)f. Unfortunately, no works presented simple and general formulas about sidebands. In this paper, theoretical formulations for computation and prediction of rotor fault-related sideband frequencies and amplitudes are given, aiming to obtain relations useful for diagnostic purposes (fault severity assessment by MCSA), and by using Part I as a case-study. A decomposition by multiphase symmetrical components is performed, taking in account space harmonics. Formulas for (1-2s)f sideband amplitude are carried out, extendable to many other sidebands.
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