Journal Article10.1190/1.3238367
An overview of full-waveform inversion in exploration geophysics
Jean Virieux,Stéphane Operto +1 more
TL;DR: This review attempts to illuminate the state of the art of FWI by building accurate starting models with automatic procedures and/or recording low frequencies, and improving computational efficiency by data-compression techniquestomake3DelasticFWIfeasible.
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Abstract: Full-waveform inversion FWI is a challenging data-fitting procedure based on full-wavefield modeling to extract quantitative information from seismograms. High-resolution imaging at half the propagated wavelength is expected. Recent advances in high-performance computing and multifold/multicomponent wide-aperture and wide-azimuth acquisitions make 3D acoustic FWI feasible today. Key ingredients of FWI are an efficient forward-modeling engine and a local differential approach, in which the gradient and the Hessian operators are efficiently estimated. Local optimization does not, however, prevent convergence of the misfit function toward local minima because of the limited accuracy of the starting model, the lack of low frequencies, the presence of noise, and the approximate modeling of the wave-physics complexity. Different hierarchical multiscale strategiesaredesignedtomitigatethenonlinearityandill-posedness of FWI by incorporating progressively shorter wavelengths in the parameter space. Synthetic and real-data case studies address reconstructing various parameters, from VP and VS velocities to density, anisotropy, and attenuation. This review attempts to illuminate the state of the art of FWI. Crucial jumps, however, remain necessary to make it as popular as migration techniques. The challenges can be categorized as 1 building accurate starting models with automatic procedures and/or recording low frequencies, 2 defining new minimization criteria to mitigate the sensitivity of FWI to amplitude errors and increasing the robustness of FWI when multiple parameter classes are estimated, and 3 improving computational efficiency by data-compression techniquestomake3DelasticFWIfeasible.
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Citations
Multiparameter Full-Waveform Inversion of 3-D On-Ground GPR With a Modified Total Variation Regularization Scheme
Xun Wang,Deshan Feng +1 more
TL;DR: A 3-D FWI algorithm involving permittivity and conductivity for GPR in the frequency domain involving the edge-based finite element method and the limited-memory Broyden-Fletcher-Goldfarb-Shanno (L-BFGS) method is developed.
49
Interparameter trade-off quantification for isotropic-elastic full-waveform inversion with various model parameterizations
TL;DR: In this paper, the interparameter trade-offs in simultaneous determination of multiple physical parameters using full waveform inversion (FWI) are analyzed and the trade-off problem is solved.
48
Joint Inversion of Electromagnetic and Seismic Data Based on Structural Constraints Using Variational Born Iteration Method
TL;DR: An efficient 2-D joint full-waveform inversion method for electromagnetic and seismic data in a layered medium background is developed and numerical simulation results show that joint inversion can improve the inversion results when compared with those from the separate inversion.
48
Seismic waveform tomography of the central and eastern Mediterranean upper mantle
TL;DR: In this paper, the authors presented a seismic waveform tomography of the upper mantle beneath the central and eastern Mediterranean down to the mantle transition zone, using a multi-scale approach in which the longest periods (100−150) are inverted first, broadening to a period band of 28−150.
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