Simulation and experimental analyses of planetary gear tooth defect using electrical and mechanical signatures of wound rotor induction generators

S. H. Kia, Mohammad Hoseintabar Marzebali, H. Henao, G. Capolino, J. Faiz
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引用次数: 3

Abstract

In this paper, the sun gear tooth fault in a one-stage planetary gear is studied in a representative electromechanical system. The aim is to use both electrical and mechanical signatures of a wound rotor induction generator for fault diagnosis through both numerical simulation and experimental approaches. In this regard, a dynamic model of the system, which includes all mechanical components in the drive-train, is presented. It is shown that the sun gear tooth localized fault generates fault impacts at the N×(fs-fc) frequency in the mechanical torque. It is also observed that the most sensitive fault frequency components are close to the main natural torsional resonance frequencies of the mechanical system under study. The simulation results are validated by experiments obtained from a test-rig based upon a 5.5kW wound rotor induction generator which is linked to a one-stage planetary gearbox through mechanical couplings and a high speed shaft. The results demonstrate that the gear tooth localized fault can be detected using both the mechanical torque and the stator current signature of the wound rotor induction generator.
基于绕线转子感应发电机电气特征和机械特征的行星齿轮齿形缺陷仿真与实验分析
本文以某典型机电系统为研究对象,研究了单级行星齿轮轮齿故障。目的是利用绕线转子感应发电机的电气和机械特征,通过数值模拟和实验方法进行故障诊断。在这方面,系统的动力学模型,其中包括所有机械部件的传动系统,提出了。结果表明,太阳齿轮齿域故障在机械转矩中以nx (fs-fc)频率产生故障冲击。研究还发现,最敏感的故障频率分量与所研究的机械系统的主要固有扭振频率接近。以5.5kW绕线转子感应发电机为试验装置,通过机械联轴器和高速轴与一级行星齿轮箱连接,仿真结果得到了验证。结果表明,利用绕线转子感应发电机的机械转矩和定子电流特征可以检测出齿轮齿局部故障。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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