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Toward the Optimization of Normalized Graph Laplacian

IEEE Transactions on Neural NetworksPublished 2 March 2011Open access
Bo Xie, Meng Wang, Dacheng Tao
Citations27
SJR quartileQ4
SJR score0.11
SNIP0.06
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TL;DR

This work proposes a method to directly optimize the normalized graph Laplacian by using pairwise constraints, which is consistent with equivalence and nonequivalence pairwise relationships, and thus it can better represent similarity between samples.

Abstract

Normalized graph Laplacian has been widely used in many practical machine learning algorithms, e.g., spectral clustering and semisupervised learning. However, all of them use the Euclidean distance to construct the graph Laplacian, which does not necessarily reflect the inherent distribution of the data. In this brief, we propose a method to directly optimize the normalized graph Laplacian by using pairwise constraints. The learned graph is consistent with equivalence and nonequivalence pairwise relationships, and thus it can better represent similarity between samples. Meanwhile, our approach, unlike metric learning, automatically determines the scale factor during the optimization. The learned normalized Laplacian matrix can be directly applied in spectral clustering and semisupervised learning algorithms. Comprehensive experiments demonstrate the effectiveness of the proposed approach.

Keywords

Computer ScienceEngineeringSocial Sciences