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Anonymous Walk Embeddings
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The task of representing entire graphs has seen a surge of prominent results, mainly due to learning convolutional neural networks (CNNs) on graph-structured data. While CNNs demonstrate state-of-the-art performance in graph classification task, such methods are supervised and therefore steer away from the original problem of network representation in task-agnostic manner. Here, we coherently propose an approach for embedding entire graphs and show that our feature representations with SVM classifier increase classification accuracy of CNN algorithms and traditional graph kernels. For this we describe a recently discovered graph object, anonymous walk, on which we design task-independent algorithms for learning graph representations in explicit and distributed way. Overall, our work represents a new scalable unsupervised learning of state-of-the-art representations of entire graphs.
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Cited by 1 Pith paper
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Graph Collaborative Attention Network for Link Prediction in Knowledge Graphs
GCAT is presented as a new graph attention model for knowledge graph link prediction, but its equations are those of KBGAT and its reported benchmark numbers do not support the stated performance claims.
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