Matrix Completion with Model-free Weighting
Jiayi Wang, Raymond K. W. Wong, Xiaojun Mao, Kwun Chuen Gary Chan
Abstract
In this paper, we propose a novel method for matrix completion under general non-uniform missing structures. By controlling an upper bound of a novel balancing error, we construct weights that can actively adjust for the non-uniformity in the empirical risk without explicitly modeling the observation probabilities, and can be computed efficiently via convex optimization. The recovered matrix based on the proposed weighted empirical risk enjoys appealing theoretical guarantees. In particular, the proposed method achieves a stronger guarantee than existing work in terms of the scaling with respect to the observation probabilities, under asymptotically heterogeneous missing settings (where entry-wise observation probabilities can be of different orders). These settings can be regarded as a better theoretical model of missing patterns with highly varying probabilities. We also provide a new minimax lower bound under a class of heterogeneous settings. Numerical experiments are also provided to demonstrate the effectiveness of the proposed method.
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Install the CLIlune papers fulltext 409d92b0-50eb-4e1a-83eb-a1a763b4ad2fCited by top-tier papers2
- A Pairwise Pseudo-likelihood Approach for Matrix Completion with Informative MissingnessJiangyuan Li, Jiayi Wang, Raymond K. W. Wong, Kwun Chuen Gary ChanNeurIPS 2024 · 8 citations
- Generalization Bounds for Inductive Matrix Completion in Low-Noise SettingsAntoine Ledent, Rodrigo Alves, Yunwen Lei, Yann Guermeur et al.AAAI 2023 · 5 citations
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