Nearly-tight Bounds for Deep Kernel Learning
Yifan Zhang, Min-Ling Zhang
Abstract
The generalization analysis of deep kernel learning (DKL) is a crucial and open problem of kernel methods for deep learning. The implicit nonlinear mapping in DKL makes existing methods of capacity-based generalization analysis for deep learning invalid. In an attempt to overcome this challenge and make up for the gap in the generalization theory of DKL, we develop an analysis method based on the composite relationship of function classes and derive capacity-based bounds with mild dependence on the depth, which generalizes learning theory bounds to deep kernels and serves as theoretical guarantees for the generalization of DKL. In this paper, we prove novel and nearly-tight generalization bounds based on the uniform covering number and the Rademacher chaos complexity for deep (multiple) kernel machines. In addition, for some common classes, we estimate their uniform covering numbers and Rademacher chaos complexities by bounding their pseudo-dimensions and kernel pseudodimensions, respectively. The mild bounds without strong assumptions partially explain the good generalization ability of deep learning combined with kernel methods.
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Install the CLIlune papers fulltext 05d3e3c0-f6be-40b4-9c93-daa3bebfdd13Cited by top-tier papers3
- Generalization Analysis for Multi-Label LearningYifan Zhang, Min-Ling ZhangICML 2024 · 7 citations
- Generalization Analysis for Label-Specific Representation LearningYifan Zhang, Min-Ling ZhangNeurIPS 2024 · 6 citations
- Generalization Analysis for Controllable LearningYifan Zhang, Xiao Zhang, Min-Ling ZhangICML 2025
Builds on4
- Sharpness-aware Minimization for Efficiently Improving GeneralizationPierre Foret, Ariel Kleiner, Hossein Mobahi, Behnam NeyshaburICLR 2021 · 1,861 citations
- Sharper Generalization Bounds for Learning with Gradient-dominated Objective FunctionsYunwen Lei, Yiming YingICLR 2021 · 52 citations
- Automated Spectral Kernel LearningJian Li, Yong Liu, Weiping WangAAAI 2020 · 15 citations
- On Measuring Excess Capacity in Neural NetworksFlorian Graf, Sebastian Zeng, Bastian Rieck, Marc Niethammer et al.NeurIPS 2022 · 13 citations
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