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A Novel Multidimensional Frequency Band Energy Ratio Analysis Method for the Pressure Fluctuation of Francis Turbine

机译:混流式水轮机压力波动的多维频带能量比分析新方法

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摘要

The pressure fluctuation has multiple influence on the steady operation of Francis turbine, and the impact degree varies with the operation condition. In this paper, for the analysis of pressure fluctuation in the Francis turbine, a novel feature extraction method of multidimensional frequency bands energy ratio is proposed based on Hilbert Huang Transform (HHT). Firstly, the pressure fluctuation signal is decomposed into intrinsic mode functions (IMFs) by EEMD. Secondly, the Hilbert marginal spectrum is utilized to analyze the frequency characteristics of IMFs. Then, according to the inner frequency of IMFs, each of them is divided into high, medium, or low frequency band which are constructed based on the frequency characteristic of the pressure fluctuations in the Francis turbine. Afterward, the energy ratio of each frequency band to the original signal is calculated, which is to realize the feature extraction of multidimensional frequency band energy ratio. Actual applications verify that this method not only can extract the time-frequency characteristics but also can analyze the condition feature of the pressure fluctuation. It is a novel-method for extracting the feature of pressure fluctuation in the Francis turbine.
机译:压力波动对混流式水轮机的稳定运行有多种影响,其冲击程度随工况而变化。为了分析混流式水轮机的压力波动,提出了一种基于希尔伯特·黄变换(HHT)的多维频带能量比特征提取方法。首先,通过EEMD将压力波动信号分解为固有模式函数(IMF)。其次,利用希尔伯特边际频谱来分析IMF的频率特性。然后,根据IMF的内部频率,将它们分别分为高,中或低频段,这些频段是根据弗朗西斯涡轮机压力波动的频率特性构建的。然后,计算每个频段与原始信号的能量比,以实现多维频段能量比的特征提取。实际应用证明,该方法不仅可以提取时频特征,而且可以分析压力波动的条件特征。这是一种提取弗朗西斯涡轮机压力波动特征的新颖方法。

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  • 来源
    《Mathematical Problems in Engineering》 |2018年第1期|3494785.1-3494785.10|共10页
  • 作者单位

    Wuhan Univ Minist Educ Key Lab Transients Hydraul Machinery Wuhan 430072 Hubei Peoples R China|Jiangxi Prov Key Lab Precis Drive & Control Nanchang 330029 Jiangxi Peoples R China;

    Zhejiang Energy Beihai Hydropower Co Ltd Hangzhou 320002 Zhejiang Peoples R China;

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