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Research of Single Component Shock Methods in Wind Turbine Fault Diagnosis

机译:风力涡轮机故障诊断单组分冲击方法研究

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The structure of the wind turbine generator system is complex and it is difficult to identify the fault signals because of fault frequency aliasing on the vibration characteristics. The wind turbine fault diagnosis method is raised on single component shock to solve the vibration signal feature extraction during the wind turbines operating. Based on the principle of Hilbert envelope demodulation, this envelope demodulation method is presented for the single IMF component which contains shock fault characteristic frequency to solve the possible problem which fault Frequency is difficult to identify when the original signal is directly asked to envelope. This method has been applied and verified when a wind farm CSC-855W wind turbine vibration monitoring device was presented. The results show that compared with the traditional envelope demodulation method, by this method wind turbine fault characteristic can be more effectively and directly extracted and the accuracy of fault diagnosis can be improved. It is of great practical value.
机译:风力涡轮发电机系统的结构是复杂的,并且由于振动特性上的故障频率叠加而难以识别故障信号。风力涡轮机故障诊断方法在单个组件冲击上提出,以解决在运行时的风力涡轮机期间的振动信号特征提取。基于Hilbert信封解调的原理,提出了该包络解调方法,用于单个IMF组件,其中包含冲击故障特征频率,解决了当前信号难以识别故障频率难以识别的可能问题。当呈现风电场CSC-855W风力涡轮机振动监测装置时,已应用和验证该方法。结果表明,与传统的包络解调方法相比,通过该方法,风力涡轮机故障特性可以更有效,直接提取,可以提高故障诊断的准确性。它具有很大的实用价值。

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