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The Design of 2-D Explicit Depth Extrapolators Using the Cauchy Norm

机译:基于柯西范数的二维显式深度外推器设计

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In this paper, we present a novel method for designing explicit wavefield extrapolators to perform both prestack and poststack depth migrations of seismic data. This method is achieved through the design of finite impulse response filters that perform the depth migration in the frequency-space (F-X) domain. The design method works on finding the regularized least square solution for the filter impulse response by using the Cauchy norm as the regularization cost function. This cost function offers an adaptive damping on the approximated filter impulse response coefficients yielding a more accurate approximation of the filter coefficients. It also insures the stability of the recursive migration process through which the designed filters will be used and prevent both over shooting and dampening of the wavenumber response of the filters designed. To test the designed filters, we then conducted poststack depth migration to the well-known SEG/EAGE salt model zero-offset data set, where subsalt structures were accurately migrated. The filters were also designed and used to perform prestack migration on the challenging Marmousi model data set successfully. The obtained results indicate that these filters can be used to perform stable and efficient prestack and poststack explicit wavefield extrapolations.
机译:在本文中,我们提出了一种设计显式波场外推器的新方法,以执行地震数据的叠前和叠后深度偏移。该方法是通过设计有限脉冲响应滤波器来实现的,该滤波器在频率空间(F-X)域中执行深度迁移。该设计方法通过使用柯西范数作为正则化代价函数来寻找滤波器脉冲响应的正则化最小二乘解。该成本函数在近似的滤波器脉冲响应系数上提供了自适应阻尼,从而产生了更精确的滤波器系数近似值。它还确保了将使用所设计滤波器的递归迁移过程的稳定性,并防止了过度射击和所设计滤波器的波数响应衰减。为了测试设计的过滤器,我们然后进行了叠后深度迁移到著名的SEG / EAGE盐模型零偏移数据集,在该数据集中准确地迁移了盐下结构。还设计了过滤器并将其用于成功地对具有挑战性的Marmousi模型数据集执行叠前迁移。获得的结果表明,这些滤波器可用于执行稳定有效的叠前和叠后显式波场外推。

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