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Vector Hilbert-Huang Transform signal processing based on scale filtering method

机译:基于比例滤波的矢量希尔伯特-黄变换信号处理

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Hilbert-Huang Transform (HHT) is a kind of signal analysis method suitable for non-stationary signal, and the combination of HHT and vector signal processing is called vector HHT, by which the instantaneous azimuth of the target can be estimated. In vector HHT signal processing method, the existence of intermittent signal and noise leads to mode mixing in the results of empirical mode decomposition (EMD). Mode mixing influences exact extraction of vibration mode, which causes that the signal which should be in the same order of intrinsic mode function (IMF) distributes in different IMFs. In vector HHT signal processing method, the two vibration speed components need to be multiplied by sound pressure respectively, so mode mixing will lead to great error in the estimation of azimuth of the target. To overcome the influence of mode mixing on vector HHT, this paper proposes a kind of vector HHT signal processing method based on scale filtering. The new method can effectively eliminate mode mixing resulting from intermittent signal and noise, and exact decomposition results can be achieved. The improved vector HHT method is used in processing acoustic vector signal, and the data obtained from a certain sea experiment in Dalian city is analyzed by the new method. The waterfall plot accurately shows the azimuth of the target ship, which proves the validity of the method.
机译:Hilbert-Huang变换(HHT)是一种适用于非平稳信号的信号分析方法,将HHT和矢量信号处理相结合称为矢量HHT,由此可以估算目标的瞬时方位角。在矢量HHT信号处理方法中,在经验模式分解(EMD)的结果中,间歇性信号和噪声的存在导致模式混合。模式混合会影响振动模式的精确提取,从而导致应以本征模式函数(IMF)相同顺序的信号分布在不同的IMF中。在矢量HHT信号处理方法中,两个振动速度分量需要分别乘以声压,因此模式混合将导致目标方位角估计中的很大误差。为了克服模式混合对向量HHT的影响,提出了一种基于尺度滤波的向量HHT信号处理方法。新方法可以有效消除信号和噪声间歇性产生的模式混合,达到精确的分解效果。改进的向量HHT方法用于处理声矢量信号,并利用该新方法对大连市某海上实验获得的数据进行了分析。瀑布图准确地显示了目标船的方位角,证明了该方法的有效性。

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