Publication | Open Access
Holographic Embeddings of Knowledge Graphs
616
Citations
29
References
2016
Year
EngineeringMachine LearningSemanticsSemantic WebLink PredictionText MiningWord EmbeddingsNatural Language ProcessingKnowledge Graph EmbeddingsData ScienceComputational LinguisticsEmbeddingsCircular CorrelationLanguage StudiesKnowledge RepresentationKnowledge DiscoveryComputer ScienceKnowledge GraphsSemantic NetworkGraph TheoryAutomated ReasoningRelationship ExtractionHolographic EmbeddingsSemantic Graph
Learning embeddings of entities and relations is an efficient and versatile method to perform machine learning on relational data such as knowledge graphs. In this work, we propose holographic embeddings (HolE) to learn compositional vector space representations of entire knowledge graphs. The proposed method is related to holographic models of associative memory in that it employs circular correlation to create compositional representations. By using correlation as the compositional operator, HolE can capture rich interactions but simultaneously remains efficient to compute, easy to train, and scalable to very large datasets. Experimentally, we show that holographic embeddings are able to outperform state-of-the-art methods for link prediction on knowledge graphs and relational learning benchmark datasets.
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