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Analysis of earthquake ground motions using an improved Hilbert-Huang transform

机译:使用改进的Hilbert-Huang变换分析地震地震动

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Some limitations of the Hilbert-Huang transform (HHT) for nonlinear and nonstationary signal processing are remarked. As an enhancement to the HHT, a time varying vector autoregressive moving average (VARMA) model based method is proposed to calculate the instantaneous frequencies of the intrinsic mode functions (IMFs) obtained from the empirical mode decomposition (EMD) of a signal. By representing the IMFs as time varying VARMA model and using the Kalman filter to estimate the time varying model parameters, the instantaneous frequencies are calculated according to the time varying parameters, then the instantaneous frequencies and the envelopes derived from the cubic spline interpolation of the maxima of IMFs are used to yield the Hilbert spectrum. The analysis of the length of day dataset and the ground motion record El Centro (1940, N-S) shows that the proposed method offers advantages in frequency resolution, and produces more physically meaningful and readable Hilbert spectrum than the original HHT method, short-time Fourier transform (STFT) and wavelet transform (WT). The analysis of the seismic response of a building during the 1994 Northridge earthquake shows that the proposed method is a powerful tool for structural damage detection, which is expected as the promising area for future research.
机译:指出了Hilbert-Huang变换(HHT)在非线性和非平稳信号处理中的一些局限性。作为对HHT的增强,提出了一种基于时变矢量自回归移动平均(VARMA)模型的方法,用于计算从信号的经验模式分解(EMD)获得的固有模式函数(IMF)的瞬时频率。通过将IMF表示为随时间变化的VARMA模型,并使用卡尔曼滤波器估计随时间变化的模型参数,根据随时间变化的参数计算瞬时频率,然后根据瞬时三次样条插值的最大值来计算瞬时频率和包络。 IMF的总和用于产生希尔伯特光谱。对一天长度数据集和地面运动记录El Centro(1940,NS)的分析表明,与原始的HHT方法(短时傅立叶方法)相比,该方法在频率分辨率方面具有优势,并产生了更有意义的物理意义和可读性的希尔伯特频谱变换(STFT)和小波变换(WT)。对1994年Northridge地震中建筑物的地震反应的分析表明,该方法是检测结构损伤的有力工具,有望作为未来研究的有希望的领域。

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