Review on the progress of least-squares migration in exploration seismology
Yang Jidong
Huang Jianping
Zhu Hejun
Li Zhenchun
Lu Shaoping
Mao Weijian
Zhou Hui
Qin Ning
Tian Kun
Abstract:Seismic imaging plays an important role in the discovery of deep discontinuities,mineral explora-tion,oil and gas prospecting and development,as well as geological surveys.Over the past half-century,with the rapid advancement of high-performance computing and advanced data acquisition,seismic imaging methods have undergone an evolution from traditional ray-based migration to wave-equation imaging,and further to least-squares migration(LSM)and full-waveform inversion(FWI)imaging.By solving a linear or nonlinear inversion problem,inversion-based migration estimates a generalized inverse of the subsurface reflectivity model,which overcomes the limitations of conventional adjoint-operator-based migration methods in irregular acquisition,limited-band-width data,and unbalanced illumination.It can significantly enhance imaging resolution and amplitude fidelity.We systematically review the progress and cutting-edge developments of inversion-based migration in exploration seis-mology,especially focusing on the theory and methodology of data-domain,image-domain and intelligent LSMs.Additionally,we describe various regularization and preconditioning strategies for LSM in terms of their mathem-atical principles and practical effectiveness.Finally,we discuss the latest development in nonlinear FWI imaging,offering theoretical and methodological references for high-precision seismic imaging studies.
Keywords:seismic imagingleast-squares migrationfull-waveform inversion imagingcomputational seis-mology
Publication Date:2026-05-31
Online Publishing Date:2026-01-21(First online date of this platform, not the publication date of the document)
Pages:29( 242-270 )
Reviews of Geophysiscs and Planetary Physics

Reviews of Geophysiscs and Planetary Physics

ISTICCSCD
ISSN:2097-1893
Year, Vol.(Issue):2026,57(3)