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Papers/Hypernetwork Knowledge Graph Embeddings

Hypernetwork Knowledge Graph Embeddings

Ivana Balažević, Carl Allen, Timothy M. Hospedales

2018-08-21Knowledge GraphsKnowledge Graph EmbeddingsPredictionLink Prediction
PaperPDFCode(official)

Abstract

Knowledge graphs are graphical representations of large databases of facts, which typically suffer from incompleteness. Inferring missing relations (links) between entities (nodes) is the task of link prediction. A recent state-of-the-art approach to link prediction, ConvE, implements a convolutional neural network to extract features from concatenated subject and relation vectors. Whilst results are impressive, the method is unintuitive and poorly understood. We propose a hypernetwork architecture that generates simplified relation-specific convolutional filters that (i) outperforms ConvE and all previous approaches across standard datasets; and (ii) can be framed as tensor factorization and thus set within a well established family of factorization models for link prediction. We thus demonstrate that convolution simply offers a convenient computational means of introducing sparsity and parameter tying to find an effective trade-off between non-linear expressiveness and the number of parameters to learn.

Results

TaskDatasetMetricValueModel
Link Prediction FB15kHits@10.734HypER
Link Prediction FB15kHits@100.885HypER
Link Prediction FB15kHits@30.829HypER
Link Prediction FB15kMRR0.79HypER
Link PredictionWN18RRHits@10.436HypER
Link PredictionWN18RRHits@100.522HypER
Link PredictionWN18RRHits@30.477HypER
Link PredictionWN18RRMR5796HypER
Link PredictionWN18RRMRR0.465HypER
Link PredictionWN18Hits@10.947HypER
Link PredictionWN18Hits@100.958HypER
Link PredictionWN18Hits@30.955HypER
Link PredictionWN18MRR0.951HypER
Link PredictionFB15k-237Hits@10.252HypER
Link PredictionFB15k-237Hits@100.52HypER
Link PredictionFB15k-237Hits@30.376HypER
Link PredictionFB15k-237MRR0.341HypER

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