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Wavefield reconstruction in attenuating media: A checkpointing-assisted reverse-forward simulation method

机译:衰减介质中的波场重建:检查点辅助的反向正演模拟方法

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摘要

Three-dimensional implementations of reverse time migration (RTM) and full-waveform inversion (FWI) require efficient schemes to access the incident field to apply the imaging condition of RTM or build the gradient of FWI. Wavefield reconstruction by reverse propagation using final snapshot and saved boundaries appears quite efficient but unstable in attenuating media, whereas the checkpointing strategy is a stable alternative at the expense of increased computational cost through repeated forward modeling. We have developed a checkpointing-assisted reverse-forward simulation (CARFS) method in the context of viscoacoustic wave propagation with a generalized Maxwell body. At each backward reconstruction step, the CARFS algorithm makes a smart decision between forward modeling using checkpoints and reverse propagation based on the minimum time-stepping cost and an energy measure. Numerical experiments demonstrated that the CARFS method allows accurate wavefield reconstruction using less timesteppings than optimal checkpointing, even if seismic attenuation is very strong. For RTM and FWI applications involving a huge number of independent sources and/or applications on architectures with limited memory, CARFS will provide an efficient tool with adequate accuracy in practical implementation.
机译:逆时偏移(RTM)和全波形反演(FWI)的三维实现需要有效的方案来访问入射场,以应用RTM的成像条件或建立FWI的梯度。通过使用最终快照和保存的边界进行反向传播进行波场重建看起来相当有效,但在衰减介质中不稳定,而检查点策略是一种稳定的替代方案,但要通过重复进行正向建模来增加计算成本。我们已经在具有广义麦克斯韦体的粘声波传播的背景下开发了一种检查点辅助的反向前向仿真(CARFS)方法。在每个后向重建步骤中,CARFS算法都会基于最小的时间步长成本和能量度量,在使用检查点进行正向建模与反向传播之间做出明智的决策。数值实验表明,即使地震衰减非常强,CARFS方法也可以使用比最佳检查点更少的时间步长来进行准确的波场重建。对于涉及大量独立资源的RTM和FWI应用程序和/或内存有限的体系结构上的应用程序,CARFS将提供一种有效的工具,在实际实施中具有足够的准确性。

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