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Investigation of model based beamforming and Bayesian inversion signal processing methods for seismic localization of underground sources

机译:基于模型的波束形成和贝叶斯反演信号处理方法在地下震源地震定位中的研究

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摘要

Techniques have been studied for the localization of an underground source with seismic interrogation signals. Much of the work has involved defining either a P-wave acoustic model or a dispersive surface wave model to the received signal and applying the time-delay processing technique and frequency-wavenumber processing to determine the location of the underground tunnel. Considering the case of determining the location of an underground tunnel, this paper proposed two physical models, the acoustic approximation ray tracing model and the finite difference time domain three-dimensional (3D) elastic wave model to represent the received seismic signal. Two localization algorithms, beamforming and Bayesian inversion, are developed for each physical model. The beam-forming algorithms implemented are the modified time-and-delay beamformer and the F-K beamformer. Inversion is posed as an optimization problem to estimate the unknown position variable using the described physical forward models. The proposed four methodologies are demonstrated and compared using seismic signals recorded by geophones set up on ground surface generated by a surface seismic excitation. The examples show that for field data, inversion for localization is most advantageous when the forward model completely describe all the elastic wave components as is the case of the FDTD 3D elastic model.
机译:已经研究了利用地震探询信号对地下震源进行定位的技术。许多工作涉及为接收信号定义P波声学模型或色散表面波模型,并应用时延处理技术和频率波数处理来确定地下隧道的位置。考虑到确定地下隧道位置的情况,本文提出了两种物理模型,分别是声近似射线追踪模型和时域有限差分三维(3D)弹性波模型来表示接收到的地震信号。针对每个物理模型开发了两种定位算法,即波束成形和贝叶斯反演。实施的波束成形算法是改进的延时波束成形器和F-K波束成形器。倒置被认为是使用所描述的物理正向模型来估计未知位置变量的优化问题。使用地震检波器记录的地震信号,对地震提出的四种方法进行了演示和比较,地震检波器是在地面地震激发产生的地表上设置的。这些示例表明,对于现场数据,当正向模型完全描述所有弹性波分量时(如FDTD 3D弹性模型的情况),对定位进行反演是最有利的。

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