arrow
Return

An Accelerated Algorithm for 3-D Multifrequency CSEM Imaging With Undulating Topography

delete2022-01-01
delete1
PRE
AI
J
Jiren Liu
任政勇 (Zhengyong Ren)
X
Xiao Xiao *
汤井田 (Jingtian Tang)
J
Jintong Xu
Y
Yu Gu
DOI:10.1109/LGRS.2022.3226859delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
3-D frequency-domain controlled-source electromagnetic (CSEM) inversion is an essential technology for subsurface conductivity imaging. In this letter, we develop an efficient 3-D inversion scheme for multifrequency CSEM (MFCSEM) data measured on a topographic earth. First, the model is discretized using the unstructured mesh, which has the ability to simulate the undulating topography. Then, we divide the frequency range into two independent frequency intervals and use the rational Krylov (RK) subspace algorithm with the open multiprocessing (OpenMP)/message passing interface (MPI) hybrid parallelization scheme to accelerate the calculations of MFCSEM forward and adjoint forward. Finally, the nonlinear conjugate gradient (NLCG) method is utilized to solve this optimization problem. We invert a synthetic dataset to verify the computational performance, and the results show that our algorithm is efficient and can obtain reliable inversion results. Furthermore, it also indicates that ignoring the effect of topography can cause severe distortion to the inversion results.
Keywords:
3-D conductivity imaging
multifrequency controlled-source electromagnetic (MFCSEM)
nonlinear conjugate gradient (NLCG) inversion
rational Krylov (RK) method
topography

Journal

IEEE Geoscience and Remote Sensing Magazine cover
IEEE Geoscience and Remote Sensing Magazine
IF:
16.4
Papers:
1.0W
Citations:
5.1K

Organization

C
Central South University
Scholars:
10.0W
Papers: 7.2W
Citations: 10.9W