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Article

Adaptive Differential Evolution Algorithm for Induced Polarization Parameters in Frequency-Domain Controlled-Source Electromagnetic Data

1
College of Geophysics and Petroleum Resources, Yangtze University, Wuhan 430100, China
2
Key Laboratory of Exploration Technologies for Oil and Gas Resources, Ministry of Education, Yangtze University, Wuhan 430100, China
3
Sinopec Geophysical Corporation Jianghan Branch, Qianjiang 433100, China
4
Karamay Oyasa Petroleum Technology Co., Ltd., Kelamayi 834000, China
5
Wuhan Raycus Fiber Laser Technologies Co., Ltd., Wuhan 430100, China
*
Author to whom correspondence should be addressed.
Minerals 2025, 15(7), 754; https://doi.org/10.3390/min15070754
Submission received: 15 June 2025 / Revised: 15 July 2025 / Accepted: 16 July 2025 / Published: 18 July 2025
(This article belongs to the Special Issue Electromagnetic Inversion for Deep Ore Explorations)

Abstract

The frequency-domain controlled-source electromagnetic method (CSEM) has been widely used in fields such as oil and gas and mineral resource exploration. In areas with a significant IP response, the CSEM signals will be modified by the IP response of the subsurface. Accurately extracting resistivity and polarization information from CSEM signals may significantly improve the exploration interpretations. In this study, we replaced real resistivity with the Cole–Cole complex resistivity model in a forward simulation of the CSEM to obtain electric field responses that included both induced polarization and electromagnetic effects. Based on this, we used the adaptive differential evolution algorithm to perform a 1-d inversion of these data to extract both the resistivity and IP parameters. Inversion of the electric field responses from representative three-layer geoelectric models, as well as from a more realistic seven-layer model, showed that the inversions were able to effectively recover resistivity and polarization information from the modeled responses, validating our methodology. The electric field response of the real geoelectric model, with 20% random noise added, was then used to simulate actual measured CSEM signals, as well as subjected to multiple inversion tests. The results of these tests continued to accurately reflect the resistivity and polarization information of the model, confirming the applicability and reliability of the algorithm. These results have significant implications for the processing and interpretation of CSEM data when induced polarization effects merit consideration and are expected to promote the use of the CSEM in more fields.
Keywords: the controlled-source frequency-domain electromagnetic method; adaptive differential evolution algorithm; electric field; resistivity; induced polarization information the controlled-source frequency-domain electromagnetic method; adaptive differential evolution algorithm; electric field; resistivity; induced polarization information

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MDPI and ACS Style

Zhou, L.; Cheng, T.; Yao, M.; Cheng, J.; Xie, X.; Mao, Y.; Yan, L. Adaptive Differential Evolution Algorithm for Induced Polarization Parameters in Frequency-Domain Controlled-Source Electromagnetic Data. Minerals 2025, 15, 754. https://doi.org/10.3390/min15070754

AMA Style

Zhou L, Cheng T, Yao M, Cheng J, Xie X, Mao Y, Yan L. Adaptive Differential Evolution Algorithm for Induced Polarization Parameters in Frequency-Domain Controlled-Source Electromagnetic Data. Minerals. 2025; 15(7):754. https://doi.org/10.3390/min15070754

Chicago/Turabian Style

Zhou, Lei, Tianjun Cheng, Min Yao, Jianzhong Cheng, Xingbing Xie, Yurong Mao, and Liangjun Yan. 2025. "Adaptive Differential Evolution Algorithm for Induced Polarization Parameters in Frequency-Domain Controlled-Source Electromagnetic Data" Minerals 15, no. 7: 754. https://doi.org/10.3390/min15070754

APA Style

Zhou, L., Cheng, T., Yao, M., Cheng, J., Xie, X., Mao, Y., & Yan, L. (2025). Adaptive Differential Evolution Algorithm for Induced Polarization Parameters in Frequency-Domain Controlled-Source Electromagnetic Data. Minerals, 15(7), 754. https://doi.org/10.3390/min15070754

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