[1] Wang J, Berzins K, Hicks D, et al. A boosted trees method for name disambiguation[J]. Scientometrics, 2012, 93(2): 391-411. DOI:10.1007/s11192-012-0681-1. [2] Tran H N, Huynh T, Do T. Author name disambiguation by using deep neural network [C]//Intelligent Information and Database Systems. ACIIDS 2014. Lecture Notes in Computer Science, Spvinger, Cham. 2014,8397: 123-132. DOI:10.1007/978-3-319-05476-6_13. [3] Han H, Giles L, Zha H, et al. Two supervised learning approaches for name disambiguation in author citations [C]//Proceedings of the 2004 Joint ACM/IEEE Conference on Digital Libraries, 2004. Tucson, AZ, USA. IEEE, 2004: 296-305. DOI:10.1145/996350.996419. [4] Cen L, Dragut E C, Si L, et al. Author disambiguation by hierarchical agglomerative clustering with adaptive stopping criterion [C]//Proceedings of the 36th International ACM SIGIR Conference on Research and Development in Information Retrieval. Dublin Ireland. New York, NY, USA: ACM, 2013: 741-744. DOI:10.1145/2484028.2484157. [5] Wu H, Li B, Pei Y J, et al. Unsupervised author disambiguation using Dempster-Shafer theory[J]. Scientometrics, 2014, 101(3): 1955-1972. DOI:10.1007/s11192-014-1283-x. [6] Song Y, Huang J, Councill I G, et al. Efficient topic-based unsupervised name disambiguation [C]//Proceedings of the 7th ACM/IEEE-CS Joint Conference on Digital Libraries. June 18-23, 2007. Vancouver, BC, Canada. New York: ACM Press, 2007: 342-351. DOI:10.1145/1255175.1255243. [7] Tang J, Fong A C M, Wang B, et al. A unified probabilistic framework for name disambiguation in digital library[J]. IEEE Transactions on Knowledge and Data Engineering, 2012, 24(6): 975-987. DOI:10.1109/TKDE.2011.13. [8] Tang J, Qu M, Mei Q Z. PTE: predictive text embedding through large-scale heterogeneous text networks [C]//Proceedings of the 21th ACM SIGKDD International Conference on Knowledge Discovery and Data Mining. 2015: 1165-1174. DOI:10.1145/2783258.2783307. [9] Levin M, Krawczyk S, Bethard S, et al. Citation-based bootstrapping for large-scale author disambiguation[J]. Journal of the American Society for Information Science and Technology, 2012, 63(5): 1030-1047. DOI:10.1002/asi.22621. [10] Louppe G, Al-Natsheh H T, Susik M, et al. Ethnicity sensitive author disambiguation using semi-supervised learning [C]//International Conference on Knowledge Engineering and the Semantic Web. Springer, Cham, 2016: 272-287. DOI:10.1007/978-3-319-45880-9_21. [11] Han H Y, Zha H, Giles C L. Name disambiguation in author citations using a K-way spectral clustering method [C]//Proceedings of the 5th ACM/IEEE-CS joint conference on Digital libraries (JCDL'05). June 7-11, 2005, Denver, CO, USA. IEEE, 2005: 334-343. DOI:10.1145/1065385.1065462. [12] Zhang Y T, Zhang F J, Yao P R, et al. Name disambiguation in AMiner: clustering, maintenance, and human in the loop [C]//Proceedings of the 24th ACM SIGKDD International Conference on Knowledge Discovery & Data Mining. 2018: 1002-1011. DOI:10.1145/3219819.3219859. [13] Zhang B C, Hasan M A. Name disambiguation in anonymized graphs using network embedding [C]//Proceedings of the 2017 ACM on Conference on Information and Knowledge Management. Singapore, Singapore. New York, NY, USA: ACM, 2017: 1239-1248. DOI:10.1145/3132847.3132873. [14] Fan X M, Wang J Y, Pu X, et al. On graph-based name disambiguation[J]. Journal of Data and Information Quality, 2011, 2(2): 1-23. DOI:10.1145/1891879.1891883. [15] Wang X Z, Tang J, Cheng H, et al. ADANA: active name disambiguation [C]//2011 IEEE 11th International Conference on Data Mining. December 11-14, 2011, Vancouver, BC, Canada. IEEE, 2011: 794-803. DOI:10.1109/ICDM.2011.19. [16] Shin D, Kim T, Choi J, et al. Author name disambiguation using a graph model with node splitting and merging based on bibliographic information[J]. Scientometrics, 2014, 100(1): 15-50. DOI:10.1007/s11192-014-1289-4. [17] Mikolov T, Sutskever I, Chen K, et al. Distributed representations of words and phrases and their compositionality [C]//Advances in Neural Information Processing Systems(NIPS). 2013: 3111-3119. [18] Perozzi B, Al-Rfou R, Skiena S. DeepWalk: online learning of social representations [C]//Proceedings of the 20th ACM SIGKDD International Conference on Knowledge Discovery and Data Mining. New York, NY, USA: ACM, 2014: 701-710. DOI:10.1145/2623330.2623732. [19] Kipf T N, Welling M. Semi-supervised classification with graph convolutional networks [EB/OL]. arXiv:1609.02907. (2016-11-03) [2020-02-10].https://arxiv.org/abs/1609.02907. [20] Ward Jr J H. Hierarchical grouping to optimize an objective function[J]. Journal of the American statistical association, 1963, 58(301): 236-244. DOI:10.1080/01621459.1963.10500845. [21] Tang J, Zhang J, Yao L M, et al. ArnetMiner: extraction and mining of academic social networks [C]//Proceedings of the 14th ACM SIGKDD International Conference on Knowledge Discovery and Data Mining. August 24-27, 2008. Las Vegas, Nevada, USA. New York, NY, USA: ACM Press, 2008: 990-998. DOI:10.1145/1401890.1402008. [22] Menestrina D, Whang S E, Garcia-Molina H. Evaluating entity resolution results[J]. Proceedings of the VLDB Endowment, 2010, 3(1/2): 208-219. DOI:10.14778/1920841.1920871. |