Model-based diagnosis of gear fault under variable loading condition

S. Leem, Jooho Choi
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引用次数: 2

Abstract

A model-based method is proposed to diagnose the gear fault in the gearbox under variable loading condition with the objective to apply it to the wind turbine CMS. A simple test bed is installed to illustrate the approach, which consists of motors and a pair of spur gears. A crack is imbedded at the tooth root of a gear. Tachometer-based order analysis, being independent on the shaft speed, is employed as a signal processing technique to identify the fault, which includes detecting the location and extracting the adequate feature. Lumped parameter dynamic model is used to simulate the operation of the test bed. In the model, the parameter related with the fault is inversely estimated by minimizing the difference between the simulated and measured features. Finally the parameter is used to estimate the crack size based on the regression model made by finite element stiffness analyses of a set of gears with imbedded crack. The results of estimated crack are validated by comparing with the actual ones of seeded crack.
变载荷条件下齿轮故障的模型诊断
提出了一种基于模型的变载荷工况下齿轮故障诊断方法,目的是将其应用于风力发电机组CMS。安装了一个简单的试验台来说明该方法,该试验台由电动机和一对正齿轮组成。在齿轮的齿根处嵌有一条裂纹。基于转速表的阶数分析是一种独立于轴转速的信号处理技术,主要包括检测故障位置和提取适当的特征。采用集总参数动态模型对试验台的运行进行了仿真。在该模型中,通过最小化模拟特征与实测特征之间的差值来逆估计与故障相关的参数。最后,利用该参数对一组嵌缝齿轮进行有限元刚度分析建立的回归模型进行裂纹尺寸估计。通过与种子裂纹的实际情况进行比较,验证了估计裂纹的结果。
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