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An Experimental Study of Sensor-less Fault Diagnosis on Rolling Bearing of Wind Turbine Generator System

机译:风力涡轮发电机系统滚动轴承传感器故障诊断的实验研究

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This paper study sensor-less fault diagnosis on rolling bearing of wind turbine generator system, by means of establishing an experiment that can simulate doubly fed wind power generation system, on basis of the mathematical model that reflects magnetic flux density impacts on the electrical signal, using the method of Motor Current Signature Analysis. According to collect the electrical signal and shaft's made by the generator bearing that works in normal and fault condition, analyzing the fault principle for the bearing of the transmission chain and the fault signal's feature. The experiment results show that the stator current signal's feature is familiar with the predicted failure frequency and the characteristic frequency of the main shaft frequency signal When rolling bearing fails, and provide the detecting sensor-less method of rolling bearing wind generator fault detection and diagnosis is feasible as well.
机译:本文研究了风力涡轮发电机系统滚动轴承的传感器故障诊断,借助于建立可以模拟双馈风发发电系统的实验,基于反映电信号对电信号的磁通密度影响的数学模型,采用电机电流签名分析方法。根据收集发电机轴承的电信号和轴,可在正常和故障状态下工作,分析传动链轴承的故障原理和故障信号的特征。实验结果表明,当滚动轴承发生故障时,定子电流信号的特征熟悉预测的故障频率和主轴频率信号的特征频率,并提供滚动轴承风力发电机故障检测和诊断的检测传感器方法也是可行的。

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