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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Enhancing resolution of nonstationary seismic data by molecular-Gabor transform
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Enhancing resolution of nonstationary seismic data by molecular-Gabor transform

机译:通过分子-Gabor变换提高非平稳地震数据的分辨率

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摘要

We propose an adaptive spectrum-broadening method (ASBM) to improve the resolution of nonstationary seismic data. This method assumes that a seismic trace can be split into segments, each of which can be considered as approximately stationary. We construct a set of specific windows, called molecular-Gabor (MG) windows, by solving an optimization problem, such that the seismic trace in each of the MG windows is stationary. A time-frequency (t-f) transform, called MG transform, can be obtained from a MG frame constructed using the MG windows. For a seismic trace, we first transform it into the t-f domain, then spectrum-broadening and/or amplitude compensation are performed in each of the MG windows. Subsequently, a high-resolution version of the nonstationary seismic trace will be obtained after the inverse MG transform. Applications of this method to synthetic and field data show that the ASBM works well for a general earth Q-model that varies with traveltime. It can restore the attenuated energy and expand the frequency bandwidth of a nonstationary seismic trace effectively. One significant advantage of our method is that it automatically estimates all the parameters that are optimal for each trace.
机译:我们提出了一种自适应频谱扩展方法(ASBM)来提高非平稳地震数据的分辨率。该方法假定地震迹线可以分为多个部分,每个部分都可以视为大致静止的。通过解决优化问题,我们构造了一组特定的窗口,称为分子Gabor(MG)窗口,这样每个MG窗口中的地震道都是固定的。可以从使用MG窗口构造的MG帧中获得称为MG变换的时频(t-f)变换。对于地震道,我们首先将其转换为t-f域,然后在每个MG窗口中执行频谱扩展和/或幅度补偿。随后,在进行逆MG变换后,将获得非平稳地震轨迹的高分辨率版本。该方法在合成数据和野外数据中的应用表明,ASBM适用于随行进时间而变化的一般地球Q模型。它可以恢复衰减的能量并有效地扩展非平稳地震道的频率带宽。我们的方法的一个重要优点是,它可以自动估算对于每个迹线都是最佳的所有参数。

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