Hybrid Context-Fusion Attention (CFA) U-Net and Clustering for Robust Seismic Horizon Interpretation
Jose Luis Lima de Jesus Silva, Joao Pedro Gomes, Paulo Roberto de Melo Barros Junior, Vitor Hugo Serravalle Reis Rodrigues, Alexsandro Guerra Cerqueira

TL;DR
This paper introduces a novel hybrid deep learning framework combining a new attention-based U-Net architecture with clustering techniques to improve seismic horizon interpretation, especially in complex and sparse data scenarios.
Contribution
The paper proposes the Context Fusion Attention U-Net, integrating geometric features into attention gates, and combines it with clustering for enhanced seismic horizon segmentation and interpolation.
Findings
CFA U-Net outperforms baseline models with IoU of 0.881 and MAE of 2.49ms.
Achieves 97.6% surface coverage on North Sea dataset.
Effective in sparse data regimes with 10-40 line spacing.
Abstract
Interpreting seismic horizons is a critical task for characterizing subsurface structures in hydrocarbon exploration. Recent advances in deep learning, particularly U-Net-based architectures, have significantly improved automated horizon tracking. However, challenges remain in accurately segmenting complex geological features and interpolating horizons from sparse annotations. To address these issues, a hybrid framework is presented that integrates advanced U-Net variants with spatial clustering to enhance horizon continuity and geometric fidelity. The core contribution is the Context Fusion Attention (CFA) U-Net, a novel architecture that fuses spatial and Sobel-derived geometric features within attention gates to improve both precision and surface completeness. The performance of five architectures, the U-Net (Standard and compressed), U-Net++, Attention U-Net, and CFA U-Net, was…
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Taxonomy
TopicsSeismic Imaging and Inversion Techniques · Hydrocarbon exploration and reservoir analysis · Reservoir Engineering and Simulation Methods
