Improving Generalization with Flat Hilbert Bayesian Inference
Truong, Tuan, Tran, Quyen, Pham-Ngoc, Quan, Ho, Nhat, Phung, Dinh, Le, Trung
We introduce Flat Hilbert Bayesian Inference (FHBI), an algorithm designed to enhance generalization in Bayesian inference. Our approach involves an iterative two-step procedure with an adversarial functional perturbation step and a functional descent step within the reproducing kernel Hilbert spaces. This methodology is supported by a theoretical analysis that extends previous findings on generalization ability from finite-dimensional Euclidean spaces to infinite-dimensional functional spaces. To evaluate the effectiveness of FHBI, we conduct comprehensive comparisons against seven baseline methods on the VTAB-1K benchmark, which encompasses 19 diverse datasets across various domains with diverse semantics. Empirical results demonstrate that FHBI consistently outperforms the baselines by notable margins, highlighting its practical efficacy. Our code is available at https://anonymous.4open.science/
Oct-5-2024
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- Europe (0.28)
- North America > United States
- Texas (0.14)
- Genre:
- Research Report > New Finding (0.34)
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