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Matrix Completion

Matrix Completion is a method for recovering lost information. It originates from machine learning and usually deals with highly sparse matrices. Missing or unknown data is estimated using the low-rank matrix of the known data.

Source: A Fast Matrix-Completion-Based Approach for Recommendation Systems

Papers

Showing 426450 of 796 papers

TitleStatusHype
Introducing the Huber mechanism for differentially private low-rank matrix completion0
Iterative missing value imputation based on feature importance0
Joint Matrix Completion and Compressed Sensing for State Estimation in Low-observable Distribution System0
k-Space Deep Learning for Reference-free EPI Ghost Correction0
L_2,1-Norm Regularized Quaternion Matrix Completion Using Sparse Representation and Quaternion QR Decomposition0
Large-Scale Low-Rank Matrix Learning with Nonconvex Regularizers0
Large-Scale Matrix Factorization with Missing Data under Additional Constraints0
Large-Scale Sparse Inverse Covariance Estimation via Thresholding and Max-Det Matrix Completion0
Latent Variable Models for Predicting File Dependencies in Large-Scale Software Development0
Learning Counterfactual Distributions via Kernel Nearest Neighbors0
Learning from Ambiguously Labeled Face Images0
Learning Iterative Reasoning through Energy Diffusion0
Learning Latent Features with Pairwise Penalties in Low-Rank Matrix Completion0
Learning Mixtures of Discrete Product Distributions using Spectral Decompositions0
Learning of Generalized Low-Rank Models: A Greedy Approach0
Learning Parameters for Weighted Matrix Completion via Empirical Estimation0
Learning Transition Operators From Sparse Space-Time Samples0
Learning Translations via Matrix Completion0
Leave-One-Out Analysis for Nonconvex Robust Matrix Completion with General Thresholding Functions0
Lifelong Matrix Completion with Sparsity-Number0
Link Discovery using Graph Feature Tracking0
Link Prediction via Matrix Completion0
Local Search Algorithms for Rank-Constrained Convex Optimization0
Log-Normal Matrix Completion for Large Scale Link Prediction0
Low Permutation-rank Matrices: Structural Properties and Noisy Completion0
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