ACL 2022long50 citations

Bottom-Up Constituency Parsing and Nested Named Entity Recognition with Pointer Networks

Songlin Yang, Kewei Tu

Abstract

Constituency parsing and nested named entity recognition (NER) are similar tasks since they both aim to predict a collection of nested and non-crossing spans. In this work, we cast nested NER to constituency parsing and propose a novel pointing mechanism for bottom-up parsing to tackle both tasks. The key idea is based on the observation that if we traverse a constituency tree in post-order, i.e., visiting a parent after its children, then two consecutively visited spans would share a boundary. Our model tracks the shared boundaries and predicts the next boundary at each step by leveraging a pointer network. As a result, it needs only linear steps to parse and thus is efficient. It also maintains a parsing configuration for structural consistency, i.e., always outputting valid trees. Experimentally, our model achieves the state-of-the-art performance on PTB among all BERT-based models (96.01 F1 score) and competitive performance on CTB7 in constituency parsing; and it also achieves strong performance on three benchmark datasets of nested NER: ACE2004, ACE2005, and GENIA. Our code will be available at https://github.com/xxxxx.

BibTeX
@inproceedings{yang-tu-2022-bottom,
    title = "Bottom-Up Constituency Parsing and Nested Named Entity Recognition with Pointer Networks",
    author = "Yang, Songlin  and
      Tu, Kewei",
    editor = "Muresan, Smaranda  and
      Nakov, Preslav  and
      Villavicencio, Aline",
    booktitle = "Proceedings of the 60th Annual Meeting of the Association for Computational Linguistics (Volume 1: Long Papers)",
    month = may,
    year = "2022",
    address = "Dublin, Ireland",
    publisher = "Association for Computational Linguistics",
    url = "https://aclanthology.org/2022.acl-long.171/",
    doi = "10.18653/v1/2022.acl-long.171",
    pages = "2403--2416"
}
Bottom-Up Constituency Parsing and Nested Named Entity Recognition with Pointer Networks · ACL 2022