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DELTACON: A Principled Massive-Graph Similarity Function

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arxiv 1304.4657 v1 pith:6PGRR7QH submitted 2013-04-17 cs.SI physics.soc-ph

classification cs.SIphysics.soc-ph
keywords graphssimilaritybrainconnectivitydeltacongraphchangesdetection
verification ladder T0 review T1 audit T2 compute T3 formal
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How much did a network change since yesterday? How different is the wiring between Bob's brain (a left-handed male) and Alice's brain (a right-handed female)? Graph similarity with known node correspondence, i.e. the detection of changes in the connectivity of graphs, arises in numerous settings. In this work, we formally state the axioms and desired properties of the graph similarity functions, and evaluate when state-of-the-art methods fail to detect crucial connectivity changes in graphs. We propose DeltaCon, a principled, intuitive, and scalable algorithm that assesses the similarity between two graphs on the same nodes (e.g. employees of a company, customers of a mobile carrier). Experiments on various synthetic and real graphs showcase the advantages of our method over existing similarity measures. Finally, we employ DeltaCon to real applications: (a) we classify people to groups of high and low creativity based on their brain connectivity graphs, and (b) do temporal anomaly detection in the who-emails-whom Enron graph.

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