论文标题

最佳基于运输的地震反转:超越周期跳过

Optimal Transport Based Seismic Inversion: Beyond Cycle Skipping

论文作者

Engquist, Bjorn, Yang, Yunan

论文摘要

如今,全波倒置(FWI)是地震成像的反问题的标准过程。 PDE受限的优化用于确定代表地球物理特性的波方程中未知参数。目标函数衡量观察到的数据与计算出的合成数据之间的不合适,并且传统上是最小二乘规范。在一系列论文中,我们引入了最佳运输的Wasserstein度量,作为减轻所谓循环跳过的替代性不合适函数,这是在局部最小值中的优化过程的捕获。在本文中,我们首先给出了关于沃斯坦斯坦度量作为目标函数的凸度的更清晰定理。然后,我们专注于两个新问题。一种是将地震信号变成概率措施的必要归一化,以便采用最佳运输理论。另一个超出周期跳过的是,反转参数以下反映界面的参数。首先,我们提出一类规范化,并证明了该类别的几个有利属性。对于后者,我们证明了使用最佳运输的FWI可以从没有地震波穿过的域中恢复地球物理特性。我们最终通过成像盐夹杂物的现实应用来说明这些特性,这在探索地球物理学中一直是一个重大挑战。

Full-waveform inversion (FWI) is today a standard process for the inverse problem of seismic imaging. PDE-constrained optimization is used to determine unknown parameters in a wave equation that represent geophysical properties. The objective function measures the misfit between the observed data and the calculated synthetic data, and it has traditionally been the least-squares norm. In a sequence of papers, we introduced the Wasserstein metric from optimal transport as an alternative misfit function for mitigating the so-called cycle skipping, which is the trapping of the optimization process in local minima. In this paper, we first give a sharper theorem regarding the convexity of the Wasserstein metric as the objective function. We then focus on two new issues. One is the necessary normalization of turning seismic signals into probability measures such that the theory of optimal transport applies. The other, which is beyond cycle skipping, is the inversion for parameters below reflecting interfaces. For the first, we propose a class of normalizations and prove several favorable properties for this class. For the latter, we demonstrate that FWI using optimal transport can recover geophysical properties from domains where no seismic waves travel through. We finally illustrate these properties by the realistic application of imaging salt inclusions, which has been a significant challenge in exploration geophysics.

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