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On the Supermodularity of Active Graph-based Semi-supervised Learning with Stieltjes Matrix Regularization

  • arXiv (Cornell University)
  • Cornell University
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Abstract

Active graph-based semi-supervised learning (AG-SSL) aims to select a small set of labeled examples and utilize their graph-based relation to other unlabeled examples to aid in machine learning tasks. It is also closely related to the sampling theory in graph signal processing. In this paper, we revisit the original formulation of graph-based SSL and prove the supermodularity of an AG-SSL objective function under a broad class of regularization functions parameterized by Stieltjes matrices. Under this setting, supermodularity yields a novel greedy label sampling algorithm with guaranteed performance relative to the optimal sampling set. Compared to three state-of-the-art graph signal sampling and recovery methods on two real-life community detection datasets, the proposed AG-SSL method attains superior classification accuracy given limited sample budgets.

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Publication details

DOI
10.48550/arxiv.1804.03273
OpenAlex
W2796684152
Document type
preprint
Language
EN
Source
arXiv (Cornell University)
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