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Inversion-Based Time-Domain Inverse

机译:基于反演的时域反演

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Seismic wave will suffer from resolution loss during its propagation in subsurface media, which is caused by the earth filtering effect. Inverse Q-filtering (IQF) is an essential scheme for eliminating earth filtering effect and enhancing temporal resolution. In this letter, IQF is achieved by solving a time-domain inverse problem whose corresponding forward model is established based on the idea of seismic migration, i.e., extrapolating the unfiltered record (the detected signal if there is no earth filtering effect) from surface downward to each time-depth point and then adopting imaging condition to obtain the attenuated record. We express this migration-based forward model as a matrix-vector equation and construct the objective function of inversion-based time-domain IQF (ITIQF). Instead of adopting frequency-domain incomplete amplitude compensation operator for the purpose of antinoise, we propose three transform-domain sparse regularization strategies, including wavelet-based constraint, curvelet-based constraint, and double constraint (a combination of wavelet- and curvelet-based constraints). Solvers of these constrained ITIQF methods are provided according to convex optimization theory. We demonstrate the superior performance of ITIQF scheme via both synthetic and field data examples.
机译:地震波在地下介质中传播时会遭受分辨率损失,这是由于地球滤波效应引起的。反向Q滤波(IQF)是消除地球滤波效果并提高时间分辨率的基本方案。在本文中,IQF是通过解决时域反问题而实现的,该问题基于地震迁移的思想建立了相应的正向模型,即从地面向下外推未过滤的记录(如果没有地球过滤效果,则为检测到的信号)到每个时间深度点,然后采用成像条件获得衰减记录。我们将这种基于迁移的正向模型表示为矩阵向量方程,并构造基于反演的时域IQF(ITIQF)的目标函数。我们提出了三种基于变换域的稀疏正则化策略,而不是采用频域不完全幅度补偿算子,包括基于小波的约束,基于曲波的约束和双重约束(基于小波和基于曲波的组合)约束)。根据凸优化理论,提供了这些约束ITIQF方法的求解器。我们通过综合和现场数据示例展示了ITIQF方案的卓越性能。

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