Tensor Entropy for Uniform Hypergraphs
December 20, 2019 ยท Declared Dead ยท ๐ IEEE Transactions on Network Science and Engineering
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Authors
Can Chen, Indika Rajapakse
arXiv ID
1912.09624
Category
cs.LG: Machine Learning
Cross-listed
cs.SI,
stat.ML
Citations
43
Venue
IEEE Transactions on Network Science and Engineering
Last Checked
6 months ago
Abstract
In this paper, we develop the notion of entropy for uniform hypergraphs via tensor theory. We employ the probability distribution of the generalized singular values, calculated from the higher-order singular value decomposition of the Laplacian tensors, to fit into the Shannon entropy formula. We show that this tensor entropy is an extension of von Neumann entropy for graphs. In addition, we establish results on the lower and upper bounds of the entropy and demonstrate that it is a measure of regularity for uniform hypergraphs in simulated and experimental data. We exploit the tensor train decomposition in computing the proposed tensor entropy efficiently. Finally, we introduce the notion of robustness for uniform hypergraphs.
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