FaultSSL: Seismic Fault Detection via Semi-supervised learning
Yimin Dou, Minghui Dong, Kewen Li, Y uan Xiao

TL;DR
FaultSSL introduces a semi-supervised learning framework for seismic fault detection that effectively incorporates unlabeled field data, improving generalization and detection accuracy in complex geological surveys.
Contribution
This work presents FaultSSL, a novel semi-supervised fault detection method using proxy tasks to leverage unlabeled data, enhancing model robustness across diverse seismic surveys.
Findings
FaultSSL outperforms existing methods in complex survey scenarios.
It effectively utilizes unlabeled field data for improved fault detection.
The approach demonstrates reliable and clear fault detection results.
Abstract
The prevailing methodology in data-driven fault detection leverages synthetic data for training neural networks. However, it grapples with challenges when it comes to generalization in surveys exhibiting complex structures. To enhance the generalization of models trained on limited synthetic datasets to a broader range of real-world data, we introduce FaultSSL, a semi-supervised fault detection framework. This method is based on the classical mean teacher structure, with its supervised part employs synthetic data and a few 2D labels. The unsupervised component relying on two meticulously devised proxy tasks, allowing it to incorporate vast unlabeled field data into the training process. The two proxy tasks are PaNning Consistency (PNC) and PaTching Consistency (PTC). PNC emphasizes the feature consistency of the overlapping regions between two adjacent views in predicting the model.…
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Taxonomy
TopicsSeismic Imaging and Inversion Techniques · Seismology and Earthquake Studies · Reservoir Engineering and Simulation Methods
