Robust full-waveform inversion based on automatic differentiation and differentiable dynamic time warping

IF 1.6 3区 地球科学 Q3 GEOCHEMISTRY & GEOPHYSICS Journal of Geophysics and Engineering Pub Date : 2023-04-18 DOI:10.1093/jge/gxad029
Y. Liu, Jie Tang, Zhengwei Tang, Chengyu Sun
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Abstract

Full waveform inversion is a methodology that determines high-resolution parameters. The widely used L2-norm misfit function has local minima if the low wavenumber components are not accurate. Suffering from cycle skipping problem, the solution of waveform inversion will be trapped in the local minima. Dynamic time warping aims to find an optimal alignment between two signals, which is a more robust measure to avoid cycle-skipping challenges. However, the discontinuity makes the conventional dynamic time warping distance unsuitable for waveform inversion. We introduce a soft dynamic time warping distance as the misfit function, which is differentiable that inverted solution can converge to the accurate global minimum. We compare the convexity of the L2-norm and soft dynamic time warping distance and show that the soft dynamic time warping distance has a wider convexity range with different time shift and amplitudes. It can alleviate the half-wavelength limitation of the conventional L2-norm. We calculate the gradient using the automatic differentiation technique and the minibatch strategy and then analyze the alignment paths of different smooth parameters. A significant smooth parameter γ makes the Soft-DTW distance tending to the L2-norm, which generates new local minima. We recommend a small smooth parameter to ensure the convexity of the Soft-DTW distance. Numerical examples show that the soft dynamic time warping can effectively reconstruct the deep velocity parameters of the BG Compass and Marmousi models with noise robustness and lower dependence on the initial model.
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基于自动微分和可微动态时间规整的鲁棒全波形反演
全波形反演是一种确定高分辨率参数的方法。如果低波数分量不准确,则广泛使用的L2范数失配函数具有局部极小值。由于存在跳周期问题,波形反演的求解将陷入局部极小值。动态时间扭曲旨在找到两个信号之间的最佳对准,这是避免周期跳跃挑战的一种更稳健的措施。然而,这种不连续性使得传统的动态时间扭曲距离不适合于波形反演。我们引入了一个软动态时间扭曲距离作为失配函数,它是可微的,逆解可以收敛到精确的全局最小值。我们比较了L2范数和软动态时间翘曲距离的凸性,发现软动态时间扭曲距离在不同的时移和幅度下具有更宽的凸性范围。它可以减轻传统L2范数的半波长限制。我们使用自动微分技术和微批量策略计算梯度,然后分析不同平滑参数的对齐路径。一个重要的光滑参数γ使软DTW距离趋向于L2范数,这产生了新的局部极小值。我们建议使用一个小的平滑参数来确保软DTW距离的凸性。数值算例表明,软动态时间扭曲可以有效地重建BG Compass和Marmousi模型的深层速度参数,具有噪声鲁棒性,对初始模型的依赖性较低。
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来源期刊
Journal of Geophysics and Engineering
Journal of Geophysics and Engineering 工程技术-地球化学与地球物理
CiteScore
2.50
自引率
21.40%
发文量
87
审稿时长
4 months
期刊介绍: Journal of Geophysics and Engineering aims to promote research and developments in geophysics and related areas of engineering. It has a predominantly applied science and engineering focus, but solicits and accepts high-quality contributions in all earth-physics disciplines, including geodynamics, natural and controlled-source seismology, oil, gas and mineral exploration, petrophysics and reservoir geophysics. The journal covers those aspects of engineering that are closely related to geophysics, or on the targets and problems that geophysics addresses. Typically, this is engineering focused on the subsurface, particularly petroleum engineering, rock mechanics, geophysical software engineering, drilling technology, remote sensing, instrumentation and sensor design.
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