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Imbalance fault detection based on the integrated analysis strategy for variable-speed wind turbines

机译:基于变速风力涡轮机的综合分析策略的不平衡故障检测

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With the rapid development of wind power generation, the increasing capacity of wind turbines brings the problems of high maintenance costs and high failure rate. It is very essential to detect the faults of wind turbines for enhancing safety and reliability. Because of the traditional analysis methods could not easily detect the imbalance and get clear fault characteristic frequencies, a novel analysis strategy should be discovered to resolve these issues. In this paper, the proposed fault detection analysis strategy integrates the order tracking analysis method and power spectral density method which analyzes the aerodynamic torque to detect the imbalance faults. If the faults of icing blades and angle faults occurs, the proposed analysis strategy could calculate the amplitude values of 1P and 3P frequencies in power spectrum and judge the fault types. It is more rapid, accurate and effective than the conventional fault detecting method. Meanwhile, it does not need to add additional sensors or data acquisition devices in wind power systems. The proposed analysis strategy uses order tracking analysis method to analyze the signals of input aerodynamic torque from the hub and reconstruct them. Then, the reconstructed signals could be processed by the power spectral density (PSD) analysis method to extract the fault characteristic frequencies in the order spectrum. Finally, the imbalance faults of the wind turbine could be detected easily by comparing the 1P and 3P frequencies. The model of a variable-speed wind turbine with DFIG and the integrated analysis strategy are established with G.H.Bladed and MATLAB software, respectively. The simulation results verify the proposed strategy is an effective way to detect various imbalance faults of variable-speed wind turbines.
机译:随着风力发电的快速发展,风力涡轮机的容量增加带来了高维护成本和高故障率的问题。检测风力涡轮机的故障是至关重要的,以提高安全性和可靠性。由于传统的分析方法无法轻易检测不平衡并获得清晰的故障特性频率,因此应发现新的分析策略来解决这些问题。本文拟议的故障检测分析策略集成了分析空气动力学扭矩的顺序跟踪分析方法和功率谱密度方法来检测不平衡故障。如果发生冰布叶片和角度故障的故障,则所提出的分析策略可以计算功率谱中的1P和3P频率的幅度值并判断故障类型。它比传统的故障检测方法更快速,准确,有效。同时,它不需要在风电系统中添加额外的传感器或数据采集设备。所提出的分析策略使用订​​单跟踪分析方法来分析来自轮毂的输入空气动力扭矩的信号并重建它们。然后,可以通过功率谱密度(PSD)分析方法处理重建信号以在顺序频谱中提取故障特性频率。最后,通过比较1P和3P频率可以容易地检测风力涡轮机的不平衡故障。分别用G.H.Bladed和Matlab软件建立了DFIG的变速风力涡轮机的模型和集成分析策略。仿真结果验证了拟议的策略是检测可变速度风力涡轮机的各种不平衡故障的有效方法。

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