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A Relational Tucker Decomposition for Multi-Relational Link Prediction

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arxiv 1902.00898 v1 pith:TFI3GOPP submitted 2019-02-03 cs.LG stat.ML

classification cs.LGstat.ML
keywords decompositionmodelssparsityknowledgelinkmulti-relationalpatternspredefined
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We propose the Relational Tucker3 (RT) decomposition for multi-relational link prediction in knowledge graphs. We show that many existing knowledge graph embedding models are special cases of the RT decomposition with certain predefined sparsity patterns in its components. In contrast to these prior models, RT decouples the sizes of entity and relation embeddings, allows parameter sharing across relations, and does not make use of a predefined sparsity pattern. We use the RT decomposition as a tool to explore whether it is possible and beneficial to automatically learn sparsity patterns, and whether dense models can outperform sparse models (using the same number of parameters). Our experiments indicate that---depending on the dataset--both questions can be answered affirmatively.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. When Metrics Disagree: A Meta-Analysis of Knowledge-Graph-Completion Model Benchmarking

    cs.LG 2026-06 unverdicted novelty 4.0 of 10

    Meta-analysis of seven aggregators on KGC benchmarks finds Z-score most balanced under consistency, stability, independence, robustness, and generalizability tests using LOMO and LOGO removals.

  2. A Contextualized BERT model for Knowledge Graph Completion

    cs.CL 2024-12 reject novelty 4.0 of 10

    CAB-KGC, a BERT classifier using head and relation context, reports Hit@1 of 0.322 on FB15k-237 and 0.637 on WN18RR, but the claimed SOTA gains do not match the paper's own comparison table.

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