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Symbiotic Evolutionary Learning for Task-Adaptive Infrared and Visible Image Fusion
IEEE Transactions on Pattern Analysis and Machine Intelligence
|August 10, 2026
Summary
EvoFuse enhances infrared and visible image fusion (IVIF) by adaptively learning task-specific weights, improving performance on downstream vision tasks. This evolutionary approach optimizes fusion for better utility and generalization.
Area of Science:
- Computer Vision
- Artificial Intelligence
- Machine Learning
Background:
- Conventional Infrared and Visible Image Fusion (IVIF) methods often fail to guarantee utility for downstream vision tasks.
- Task-driven fusion approaches using fixed weights struggle with conflicting objectives in multi-task scenarios, leading to suboptimal generalization.
Purpose of the Study:
- To propose a symbiotic evolutionary learning framework (EvoFuse) for task-adaptive IVIF.
- To overcome limitations of static loss weights and heuristic criteria in image fusion.
- To enhance the correlation between image fusion and perception tasks.
Main Methods:
- Developed a re-parameterizable fusion architecture for multi-branch capacity during training and compact inference.
- Introduced an evolutionary search mechanism to dynamically evolve task-aware loss-weight configurations.
- Incorporated a saliency discriminative loss to emphasize semantically crucial regions.
Main Results:
- EvoFuse achieved competitive or superior results across eleven datasets for fusion and downstream perception tasks.
- The method demonstrated efficient inference capabilities.
- The evolutionary approach enabled mutual adaptation between fusion and task models.
Conclusions:
- The proposed EvoFuse framework offers a novel approach to task-adaptive IVIF.
- Dynamic weight evolution and Pareto-inspired criteria improve fusion performance and generalization.
- EvoFuse provides a more effective and efficient solution for integrating thermal and visible imagery.
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