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Fault Diagnosis of Wind Turbine Gearboxes Based on DFIG Stator Current Envelope Analysis

机译:基于DFIG定子电流包络分析的风力发电机齿轮箱故障诊断。

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The drivetrains of many utility-scale wind turbines have a gearbox connected with a doubly fed induction generator (DFIG). Since gearbox failure is a major contributor to the high maintenance cost of wind turbines faced by the wind industry, it is important to perform fault diagnosis for gearboxes. Among different gearbox fault diagnosis methods, those using current signals collected from generator terminals have shown their merits in terms of complexity, cost, and reliability. In this paper, a new method that uses a DFIG stator current signal for the fault diagnosis of wind turbine drivetrain gearbox in nonstationary conditions is proposed. In the proposed method, the dc offset and high frequency noise of the current signal are first eliminated. Then, the envelope of the current signal is obtained by using the Hilbert transform. The current envelope signal only contains nonstationary frequencies that are proportional to the DFIC shaft rotating frequency. Next, a synchronous resampling algorithm is designed to convert the current envelope signal with a constant time interval to a resampled current envelope signal with a constant phase angle interval. Finally, the power spectral density analysis is used to obtain the frequency spectrum of the resampled current envelope signal from which the constant characteristic frequencies can be easily identified for the purpose of fault diagnosis. Laboratory test data collected from a 1/3 hp DFIG wind turbine drivetrain test rig and field data obtained from three 1.6-MW DFIG wind turbines are used to show the superiority of the proposed method.
机译:许多公用事业规模的风力涡轮机的传动系统具有与双馈感应发电机(DFIG)连接的齿轮箱。由于变速箱故障是造成风电行业面临的风力涡轮机高昂维修成本的主要因素,因此对变速箱进行故障诊断非常重要。在不同的齿轮箱故障诊断方法中,那些使用从发电机端子收集的电流信号的方法已经在复杂性,成本和可靠性方面表现出了优势。本文提出了一种新的方法,该方法使用DFIG定子电流信号来诊断非平稳工况下的风力发电机传动齿轮箱。在所提出的方法中,首先消除了电流信号的直流偏移和高频噪声。然后,通过使用希尔伯特变换获得当前信号的包络。当前包络信号仅包含与DFIC轴旋转频率成比例的非平稳频率。接下来,设计了同步重采样算法,以将具有恒定时间间隔的电流包络信号转换为具有恒定相角间隔的重采样电流包络信号。最后,功率谱密度分析用于获得重采样电流包络信号的频谱,从中可以容易地识别出恒定的特征频率,以进行故障诊断。从1/3 hp DFIG风力涡轮机传动系统测试台收集的实验室测试数据以及从三台1.6 MW DFIG风力涡轮机获得的现场数据用于证明所提出方法的优越性。

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