Difference between revisions of "CONLL-2003 (State of the art)"

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Revision as of 06:26, 12 July 2019

  • Performance measure: F = 2 * Precision * Recall / (Recall + Precision)
  • Precision: percentage of named entities found by the algorithm that are correct
  • Recall: percentage of named entities defined in the corpus that were found by the program
  • Exact match (for all words of a chunk) is used in the calculation of precision and recall (see CONLL scoring software)


  • Training data: Train split of CONLL-2003 corpus
  • Dryrun data: Testa split of CONLL-2003 corpus
  • Testing data: Testb split of CONLL-2003 corpus
  • The corpus contains a very high ratio of metonymic references (city names standing for sport teams)


Table of results

System name Short description System type (1) Main publications Software Results
FIJZ Best CONLL-2003 participant S Florian, Ittycheriah, Jing and Zhang (2003) - 88.76%
Baseline Vocabulary transfer from training to testing S Tjong Kim Sang and De Meulder(2003) - 59.61%
Balie Unsupervised approach: no prior training U Nadeau, Turney and Matwin (2006) sourceforge.net 55.98%
BI-LSTM-CRF Bidirectional LSTM-CRF Model S Huang et al. (2015) - 90.10%
BI-LSTM-CRF Bidirectional LSTM-CRF Model S Akbik, Blythe, & Vollgraf (2018) https://github.com/zalandoresearch/flair 93.09%
  • (1) System type: R = hand-crafted rules, S = supervised learning, U = unsupervised learning, H = hybrid

References

Florian, R., Ittycheriah, A., Jing, H. and Zhang, T. (2003) Named Entity Recognition through Classifier Combination. Proceedings of CoNLL-2003. Edmonton, Canada.

Nadeau, D., Turney, P. D. and Matwin, S. (2006) Unsupervised Named-Entity Recognition: Generating Gazetteers and Resolving Ambiguity. Proceedings 19th Canadian Conference on Artificial Intelligence. Québec, Canada.

Tjong Kim Sang, E. F. and De Meulder, F. (2003) Introduction to the CoNLL-2003 Shared Task: Language-Independent Named Entity Recognition. Proceedings of CoNLL-2003. Edmonton, Canada.

Z. H. Huang, W. Xu, and K. Yu. (2015) Bidirectional LSTM-CRF Models for Sequence Tagging. In arXiv:1508.01991. 2015.

See also