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Reflection full-waveform inversion using a modified phase misfit function

机译:使用修正相位失配函数的反射全波形反演

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摘要

Reflection full-waveform inversion (RFWI) updates the low- and highwavenumber components, and yields more accurate initial models compared with conventional full-waveform inversion (FWI). However, there is strong nonlinearity in conventional RFWI because of the lack of low-frequency data and the complexity of the amplitude. The separation of phase and amplitude information makes RFWI more linear. Traditional phase-calculation methods face severe phase wrapping. To solve this problem, we propose a modified phase-calculation method that uses the phase-envelope data to obtain the pseudo phase information. Then, we establish a pseudophase-information-based objective function for RFWI, with the corresponding source and gradient terms. Numerical tests verify that the proposed calculation method using the phase-envelope data guarantees the stability and accuracy of the phase information and the convergence of the objective function. The application on a portion of the Sigsbee2A model and comparison with inversion results of the improved RFWI and conventional FWI methods verify that the pseudophase-based RFWI produces a highly accurate and efficient velocity model. Moreover, the proposed method is robust to noise and high frequency.
机译:与传统的全波形反演 (FWI) 相比,反射全波形反演 (RFWI) 更新了低波数和高波数分量,并产生了更准确的初始模型。然而,由于缺乏低频数据和幅度的复杂性,传统的RFWI存在很强的非线性。相位和幅度信息的分离使RFWI更加线性。传统的相位计算方法面临严重的相位包装。针对该问题,我们提出了一种改进的相位计算方法,该方法利用相位包络数据获取伪相信息。然后,我们建立了一个基于伪相位信息的RFWI目标函数,并给出了相应的源项和梯度项。数值试验验证了所提相位包络数据计算方法保证了相位信息的稳定性和准确性以及目标函数的收敛性。在Sigsbee2A模型的一部分上的应用,以及与改进的RFWI和传统FWI方法的反演结果的比较,验证了基于伪相的RFWI产生了高度准确和高效的速度模型。此外,所提方法对噪声和高频具有鲁棒性。

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