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Joint Feature and Differentiable $ k $-NN Graph Learning using Dirichlet Energy

About

Feature selection (FS) plays an important role in machine learning, which extracts important features and accelerates the learning process. In this paper, we propose a deep FS method that simultaneously conducts feature selection and differentiable $ k $-NN graph learning based on the Dirichlet Energy. The Dirichlet Energy identifies important features by measuring their smoothness on the graph structure, and facilitates the learning of a new graph that reflects the inherent structure in new feature subspace. We employ Optimal Transport theory to address the non-differentiability issue of learning $ k $-NN graphs in neural networks, which theoretically makes our method applicable to other graph neural networks for dynamic graph learning. Furthermore, the proposed framework is interpretable, since all modules are designed algorithmically. We validate the effectiveness of our model with extensive experiments on both synthetic and real-world datasets.

Lei Xu, Lei Chen, Rong Wang, Feiping Nie, Xuelong Li• 2023

Related benchmarks

TaskDatasetResultRank
ClassificationCOIL-20
Accuracy1
76
ClusteringCOIL-20
ACC66
47
ClassificationGLIOMA
Accuracy81
46
ClassificationLung
ACC94
46
ClusteringYale
Accuracy62
37
ClassificationProstate
Accuracy89
32
ClassificationYale
Accuracy81
28
ClassificationwarpPIE 10P
Accuracy99
26
ClassificationMadelon
Accuracy90
26
ClassificationSMK
Accuracy75
26
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