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Applying dual-tree complex discrete wavelet transform and gamma modulating function for simulation of ground motions

机译:应用双树复杂离散小波变换和伽马调节功能,用于仿真地面运动

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The aim of this paper is to develop a stochastic-parametric model for the generation of synthetic ground motions (GMs) which are in accordance with a real GM. In the proposed model, the dual-tree complex discrete wavelet transform (DT-CDWT) is applied to real GMs to decompose them into several frequency bands. Then, the gamma modulating function (GMF) is used to simulate the wavelet coefficients of each level. Consequently, synthetic wavelet coefficients are generated using extracted model parameters and then synthetic GM is extracted by applying the inverse DT-CDWT to synthetic wavelet coefficients. This model simulates the time-frequency distribution of both wide-frequency and narrow-frequency bandwidth GMs. Besides being less time consuming, it simulates several dominant frequency peaks at any moment in the time duration of GM, because each frequency band is separately simulated by the gamma function. Moreover, the inelastic response spectra of synthetic GMs generated by the proposed model are a good estimate of target ones. Using the random sign generator in the proposed model, it is possible to generate any number of synthetic GMs in accordance with a recorded one. Because of these advantages, the proposed model is suitable for using in performance-based earthquake engineering.
机译:本文的目的是开发一种用于产生符合真实GM的合成地运动(GMS)的随机参数模型。在所提出的模型中,双树复杂离散小波变换(DT-CDWT)应用于真实GMS以将它们分解为几个频带。然后,伽马调制功能(GMF)用于模拟每个级别的小波系数。因此,使用提取的模型参数生成合成小波系数,然后通过将逆DT-CDWT应用于合成小波系数来提取合成GM。该模型模拟宽频和窄频带带宽GMS的时频分布。除了较少的耗时之外,它在GM的持续时间内的任何时刻都模拟了几个主导频率峰值,因为每个频带由伽马函数分别模拟。此外,所提出的模型产生的合成GMS的非弹性响应光谱是对目标的估计。在所提出的模型中使用随机标志生成器,可以根据记录的模型生成任何数量的合成GM。由于这些优点,所提出的模型适用于基于性能的地震工程。

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