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dc.contributor.authorBianchi, Filippo Maria
dc.contributor.authorGrattarola, Daniele
dc.contributor.authorLivi, Lorenzo
dc.contributor.authorAlippi, Cesare
dc.date.accessioned2021-01-28T11:43:00Z
dc.date.available2021-01-28T11:43:00Z
dc.date.created2020-12-22T08:49:39Z
dc.date.issued2020
dc.identifier.issn2162-237X
dc.identifier.urihttps://hdl.handle.net/11250/2725167
dc.description.abstractAbstract—In graph neural networks (GNNs), pooling operators compute local summaries of input graphs to capture their global properties, and they are fundamental for building deep GNNs that learn hierarchical representations. In this work, we propose the Node Decimation Pooling (NDP), a pooling operator for GNNs that generates coarser graphs while preserving the overall graph topology. During training, the GNN learns new node representations and fits them to a pyramid of coarsened graphs, which is computed offline in a pre-processing stage. NDP consists of three steps. First, a node decimation procedure selects the nodes belonging to one side of the partition identified by a spectral algorithm that approximates the MAXCUT solution. Afterwards, the selected nodes are connected with Kron reduction to form the coarsened graph. Finally, since the resulting graph is very dense, we apply a sparsification procedure that prunes the adjacency matrix of the coarsened graph to reduce the computational cost in the GNN. Notably, we show that it is possible to remove many edges without significantly altering the graph structure. Experimental results show that NDP is more efficient compared to state-of-the-art graph pooling operators while reaching, at the same time, competitive performance on a significant variety of graph classification tasks.
dc.language.isoeng
dc.titleHierarchical Representation Learning in Graph Neural Networks with Node Decimation Pooling
dc.typePeer reviewed
dc.typeJournal article
dc.rights.holder2020 The Authors
dc.description.versionsubmittedVersion
cristin.ispublishedtrue
cristin.fulltextpreprint
cristin.qualitycode2
dc.identifier.cristin1862564
dc.source.journalIEEE Transactions on Neural Networks and Learning Systems


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