CAMEx: Curvature-aware Merging of Experts
Viet Dung Nguyen, Minh Nguyen Hoang, Luc Q. Nguyen, Rachel S. Y. Teo, Tan Minh Nguyen, Linh Duy Tran
摘要
Existing methods for merging experts during model training and fine-tuning predominantly rely on Euclidean geometry, which assumes a flat parameter space. This assumption can limit the model's generalization ability, especially during the pre-training phase, where the parameter manifold might exhibit more complex curvature. Curvature-aware merging methods typically require additional information and computational resources to approximate the Fisher Information Matrix, adding memory overhead. In this paper, we introduce CAMEx (Curvature-Aware Merging of Experts), a novel expert merging protocol that incorporates natural gradients to account for the non-Euclidean curvature of the parameter manifold. By leveraging natural gradients, CAMEx adapts more effectively to the structure of the parameter space, improving alignment between model updates and the manifold's geometry. This approach enhances both pre-training and fine-tuning, resulting in better optimization trajectories and improved generalization without the substantial memory overhead typically associated with curvatureaware methods. Our contributions are two-fold: (1) CAMEx significantly outperforms traditional Euclidean-based expert merging techniques across various natural language processing tasks, leading to enhanced performance during pretraining and fine-tuning; (2) we introduce a dynamic merging architecture that optimizes resource utilization, achieving high performance while reducing computational costs, facilitating efficient scaling of large language models.
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引用它的顶会 Paper3
- Expert Merging in Sparse Mixture of Experts with Nash BargainingDung Viet Nguyen, Anh Nguyen Thi, Minh Hoang Nguyen, Luc Nguyen 等ICLR 2026 · 被引用 3 次
- MoLEx: Mixture of Layer Experts for Fine-tuning with Sparse UpcyclingRachel S. Y. Teo, Tan Minh NguyenICLR 2025
- Tight Clusters Make Specialized ExpertsStefan K. Nielsen, Rachel S. Y. Teo, Laziz U. Abdullaev, Tan Minh NguyenICLR 2025
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