[1] Zelenko D, Aone C, Richardella A. Kernel methods for relation extraction[C]//Proceedings of the ACL-02 conference on Empirical methods in natural language processing-EMNLP’02. Not Known. Morristown, NJ, USA: Association for Computational Linguistics, 2002: 71-78. DOI:10.3115/1118693.1118703. [2] Chan Y S, Roth D. Exploiting syntactico-semantic structures for relation extraction[C]//Proceedings of the 49th Annual Meeting of the Association for Computational Linguistics: Human Language Technologies-Volume 1. Portland, Oregon, 2011: 551-560. [3] Li Q, Ji H. Incremental joint extraction of entity mentions and relations[C]//Proceedings of the 52nd Annual Meeting of the Association for Computational Linguistics (Volume 1: Long Papers). Baltimore, Maryland. Stroudsburg, PA,USA: Association for Computational Linguistics, 2014: 402-412. DOI:10.3115/v1/p14-1038. [4] Yu X, Lam W. Jointly identifying entities and extracting relations in encyclopedia text via a graphical model approach[C]//Proceedings of the 23rd International Conference on Computational Linguistics: Posters. Association for Computational Linguistics. August 23-27,2010, Beijing, China. 2010: 1399-1407. [5] Miwa M, Bansal M. End-to-end relation extraction using LSTMs on sequences and tree structures[C]// Proceedings of the 54th Annual Meeting of the Association for Computational Linguistics (Volume 1: Long Papers). Berlin, Germany. Stroudsburg, PA, USA: Association for Computational Linguistics, 2016: 1105-1116. DOI:10.18653/v1/p16-1105. [6] Dai D, Xiao X Y, Lyu Y J, et al. Joint extraction of entities and overlapping relations using position-attentive sequence labeling[J]. Proceedings of the AAAI Conference on Artificial Intelligence, 2019, 33:6300-6308. DOI:10.1609/aaai.v33i01.33016300. [7] Zeng X R, Zeng D J, He S Z, et al. Extracting relational facts by an end-to-end neural model with copy mechanism[C]//Proceedings of the 56th Annual Meeting of the Association for Computational Linguistics (Volume 1: Long Papers). Melbourne, Australia. Stroudsburg, PA, USA: Association for Computational Linguistics, 2018: 506-514. DOI:10.18653/v1/p18-1047. [8] Collobert R, Weston J, Bottou L, et al. Natural language processing (almost) from scratch[J]. IEICE Transactions on Fundamentals of Electronics, Communications and Computer Sciences, 2011, abs/1103.0398: 2493-2537. [9] Ma X Z, Hovy E. End-to-end sequence labeling via Bi-directional LSTM-CNNs-CRF[EB/OL]. 2016: arXiv: 1603.01354[cs.LG].(2016-03-04) [2020-05-20] https://arxiv.org/abs/1603.01354. [10] Auer S, Bizer C, Kobilarov G, et al. DBpedia: a nucleus for a web of open data[C]//The Semantic Web. Springer, Berlin, Heidelberg, 2007: 722-735. DOI:10.1007/978-3-540-76298-0_52. [11] Bollacker K, Evans C, Paritosh P, et al. Freebase: a collaboratively created graph database for structuring human knowledge[C]//SIGMOD ′08: Proceedings of the 2008 ACM SIGMOD international conference on Management of data. 2008: 1247-1250. DOI:10.1145/1376616.1376746. [12] Nadeau D, Sekine S. A survey of named entity recognition and classification[J]. Lingvisticae Investigationes, 2007, 30(1): 3-26. DOI:10.1075/li.30.1.03nad. [13] Rink B, Harabagiu S. Utd: classifying semantic relations by combining lexical and semantic resources[C]//Proceedings of the 5th International Workshop on Semantic Evaluation. Association for Computational Linguistics, 2010: 256-259. [14] Luo G, Huang X J, Lin C Y, et al. Joint entity recognition and disambiguation[C]//Proceedings of the 2015 Conference on Empirical Methods in Natural Language Processing. Lisbon, Portugal. Stroudsburg, PA, USA: Association for Computational Linguistics, 2015: 879-888. DOI:10.18653/v1/d15-1104. [15] Lample G, Ballesteros M, Subramanian S, et al. Neural architectures for named entity recognition[C]//Proceedings of the 2016 Conference of the North American Chapter of the Association for Computational Linguistics: Human Language Technologies. San Diego, California. Stroudsburg, PA, USA: Association for Computational Linguistics, 2016: 260-270. DOI:10.18653/v1/n16-1030. [16] Huang Z H, Xu W, Yu K. Bidirectional LSTM-CRF models for sequence tagging[J]. arXiv:1508.01991,2015. [17] Zheng S C, Wang F, Bao H Y, et al. Joint extraction of entities and relations based on a novel tagging scheme[C]//Proceedings of the 55th Annual Meeting of the Association for Computational Linguistics (Volume 1: Long Papers). Vancouver, Canada. Stroudsburg, PA, USA: Association for Computational Linguistics, 2017: 1227-1236. DOI:10.18653/v1/p17-1113. [18] Fu T J, Li P H, Ma W Y. GraphRel: modeling text as relational graphs for joint entity and relation extraction[C]//Proceedings of the 57th Annual Meeting of the Association for Computational Linguistics. Florence, Italy. Stroudsburg, PA, USA: Association for Computational Linguistics, 2019: 1409-1418. DOI:10.18653/v1/p19-1136. [19] Mikolov T, Chen K, Corrado G, et al. Efficient estimation of word representations in vector space[J]. arXiv:1301.3781,2013. [20] Vaswani A, Shazeer N, Parmar N, et al. Attention is all you need[C]//Advances in neural information processing systems. 2017: 5998-6008. [21] Riedel S, Yao L M, McCallum A. Modeling relations and their mentions without labeled text[C]//Joint European Conference on Machine Learning and Knowledge Discovery in Databases. Springer, Berlin, Heidelberg, 2010: 148-163. DOI:10.1007/978-3-642-15939-8_10. [22] Gardent C, Shimorina A, Narayan S, et al. Creating training corpora for NLG micro-planners[C]//Proceedings of the 55th Annual Meeting of the Association for Computational Linguistics (Volume 1: Long Papers).Vancouver, Canada. Stroudsburg, PA, USA: Association for Computational Linguistics, 2017: 179-188. DOI:10.18653/v1/p17-1017. [23] Hochreiter S, Schmidhuber J. Long short-term memory[J]. Neural Computation, 1997, 9(8):1735-1780. DOI:10.1162/neco.1997.9.8.1735. [24] Kingma D P, Ba J. Adam: a method for stochastic optimization[J]. arXiv:1412.6980,2014. |