Joint Inversion of DC Resistivity and MT Data using Multi-Objective Grey Wolf Optimization

Fuente: arXiv
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Auteurs principaux: Sharma, Rohan, Vashisth, Divakar, Sarkar, Kuldeep, Singh, Upendra Kumar
Format: Preprint
Publié: 2024
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author Sharma, Rohan
Vashisth, Divakar
Sarkar, Kuldeep
Singh, Upendra Kumar
author_facet Sharma, Rohan
Vashisth, Divakar
Sarkar, Kuldeep
Singh, Upendra Kumar
contents Joint inversion of geophysical datasets is instrumental in subsurface characterization and has garnered significant popularity, leveraging information from multiple geophysical methods. In this study, we implemented the joint inversion of DC resistivity with MT data using the Multi-Objective Grey Wolf Optimization (MOGWO) algorithm. As an extension of the widely-used Grey Wolf Optimization algorithm, MOGWO offers a suite of pareto optimal non-dominated solutions, eliminating the need for weighting parameters in the objective functions. This set of non-dominated predictions also facilitates the understanding of uncertainty in the predicted model parameters. Through a field case study in the region around Broken Hill in South Central Australia, the paper showcases MOGWO's capabilities in joint inversion, providing confident estimates of the model parameters (resistivity profiles), as indicated by a narrow spread in the suite of solutions. The obtained results are comparable to well established methodologies and highlight the efficacy of MOGWO as a reliable tool in geophysical exploration.
format Preprint
id arxiv_https___arxiv_org_abs_2408_02414
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Joint Inversion of DC Resistivity and MT Data using Multi-Objective Grey Wolf Optimization
Sharma, Rohan
Vashisth, Divakar
Sarkar, Kuldeep
Singh, Upendra Kumar
Geophysics
Joint inversion of geophysical datasets is instrumental in subsurface characterization and has garnered significant popularity, leveraging information from multiple geophysical methods. In this study, we implemented the joint inversion of DC resistivity with MT data using the Multi-Objective Grey Wolf Optimization (MOGWO) algorithm. As an extension of the widely-used Grey Wolf Optimization algorithm, MOGWO offers a suite of pareto optimal non-dominated solutions, eliminating the need for weighting parameters in the objective functions. This set of non-dominated predictions also facilitates the understanding of uncertainty in the predicted model parameters. Through a field case study in the region around Broken Hill in South Central Australia, the paper showcases MOGWO's capabilities in joint inversion, providing confident estimates of the model parameters (resistivity profiles), as indicated by a narrow spread in the suite of solutions. The obtained results are comparable to well established methodologies and highlight the efficacy of MOGWO as a reliable tool in geophysical exploration.
title Joint Inversion of DC Resistivity and MT Data using Multi-Objective Grey Wolf Optimization
topic Geophysics
url https://arxiv.org/abs/2408.02414