Encoded Simultaneous Sources Full-Waveform Inversion based on the phase rotation of wavefield in the time domain

E. Duarte, C. D. Costa, G. Corso, J. M. D. Araújo
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Abstract

Encoding techniques are powerful strategies to speedup seismic inversion processes based on full-waveform inversion. In this work, we introduce a new simultaneous sources encoding strategy for time domain full-waveform inversion based on the phase rotation wavefield in the time domain constructed with help of the Hilbert transform. This encoding strategy consists in applying a random phase rotation to each shot gather. In addition, we combine our encoding scheme with restarted L-BFGS scheme. We have tested our scheme using synthetic data set from 2D SEG/EAGE overthrust model. In our tests, we have compared the effectiveness of our scheme with the conventional polarity encoding strategy. In this comparison, our scheme has shown to be more effective to mitigate the crosstalk noise than the polarity encoding strategy. Furthermore, our scheme showed an improvement of the convergence speed in comparison with polarity encoding.
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基于时域波场相位旋转的编码同步源全波形反演
编码技术是提高全波形反演速度的有力手段。本文提出了一种基于希尔伯特变换构造的时域相位旋转波场的时域全波形反演同步源编码策略。这种编码策略包括对每个镜头集合应用随机相位旋转。此外,我们将我们的编码方案与重新启动的L-BFGS方案相结合。我们使用2D SEG/EAGE逆冲模型的合成数据集对我们的方案进行了测试。在我们的测试中,我们将我们的方案与传统极性编码策略的有效性进行了比较。在此比较中,我们的方案比极性编码策略更有效地抑制串扰噪声。此外,与极性编码相比,该方案的收敛速度有所提高。
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