Integrating Relation Constraints with Neural Relation Extractors

Authors

  • Yuan Ye Wangxuan Institute of Computer Technology
  • Yansong Feng Wangxuan Institute of Computer Technology
  • Bingfeng Luo Wangxuan Institute of Computer Technology
  • Yuxuan Lai Wangxuan Institute of Computer Technology
  • Dongyan Zhao Wangxuan Institute of Computer Technology

DOI:

https://doi.org/10.1609/aaai.v34i05.6487

Abstract

Recent years have seen rapid progress in identifying predefined relationship between entity pairs using neural networks (NNs). However, such models often make predictions for each entity pair individually, thus often fail to solve the inconsistency among different predictions, which can be characterized by discrete relation constraints. These constraints are often defined over combinations of entity-relation-entity triples, since there often lack of explicitly well-defined type and cardinality requirements for the relations. In this paper, we propose a unified framework to integrate relation constraints with NNs by introducing a new loss term, Constraint Loss. Particularly, we develop two efficient methods to capture how well the local predictions from multiple instance pairs satisfy the relation constraints. Experiments on both English and Chinese datasets show that our approach can help NNs learn from discrete relation constraints to reduce inconsistency among local predictions, and outperform popular neural relation extraction (NRE) models even enhanced with extra post-processing. Our source code and datasets will be released at https://github.com/PKUYeYuan/Constraint-Loss-AAAI-2020.

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Published

2020-04-03

How to Cite

Ye, Y., Feng, Y., Luo, B., Lai, Y., & Zhao, D. (2020). Integrating Relation Constraints with Neural Relation Extractors. Proceedings of the AAAI Conference on Artificial Intelligence, 34(05), 9442-9449. https://doi.org/10.1609/aaai.v34i05.6487

Issue

Section

AAAI Technical Track: Natural Language Processing