Computer Science ›› 2026, Vol. 53 ›› Issue (6A): 250600055-5.doi: 10.11896/jsjkx.250600055
• Artificial Intelligence • Previous Articles Next Articles
YANG Hua, WANG Baohui
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| [1] LIU H Y,QU X L,SHEN Y K,et al.Research on Reasoning of Traditional Chinese Medicine Knowledge Graph [J/OL].[2025-04-02] .http://kns.cnki.net/kcms/detail/11.5699.R.20250307.2243.009.html. [2] WANG S B.Research on the Evolution of Knowledge GraphsBased on Multimodal Large Models [J].China High-Tech,2025(2):25-27. [3] SHEN M L,SHI Z C,GAO Y B,et al.Fact Verification Based on Collaborative Reasoning of Graph Embedding and Semantic Fusion [J/OL].[2025-04-02] .http://kns.cnki.net/kcms/detail/51.1307.TP.20240630.2146.002.html. [4] ZHANG L.Current Situation,Problems and Suggestions ofStandardized Bidding for Engineering Construction Projects [J].Popular Standardization,2025(6):100-102. [5] WANG L,ZHAO W,WEI Z,et al.SimKGC:Simple Contrastive Knowledge Graph Completion with Pre-trained Language Mo-dels[C]//Proceedings of the 60th Annual Meeting of the Association for Computational Linguistics.Association for Computational Linguistics,2022:1-12. [6] JIANG P,AGARWAL S,JIN B,et al.Text-Augmented OpenKnowledge Graph Completion via Pre-Trained Language Models[C]//Proceedings of the 2023 Conference on Empirical Methods in Natural Language Processing(EMNLP).Association for Computational Linguistics,2023:1-12. [7] WANG H,ZHAO S,QIANG Z,et al.Knowledge-tuning Large Language Models with Structured Medical Knowledge Bases for Reliable Response Generation in Chinese[J].arXiv:2309.04175,2023. [8] LV X,LIN Y,CAO Y,et al.Do Pre-trained Models BenefitKnowledge Graph Completion? A Reliable Evaluation and a Reasonable Approach[C]//Findings of the Association for Computational Linguistics(ACL 2022).IEEE Computer Society,2022:3570-3581. [9] LI C K,XIE M Y,LÜ Q,et al.A Method for Extracting IFC-BIM Semantic Information Based on the TransE Model[J].Journal of Geo-Information Science,2025,27(6):1263-1274. [10] DU X J,TAO Y Z,LI G L.Research on the development ofTrans series knowledge representation methods[J].Computer and Digital Engineering,2023,51(11):2515-2517. [11] SUN Z,DENG Z,NIE J,et al.RotatE:Knowledge Graph Embedding by Relational Rotation in Complex Space[J].arXiv:1902.10197,2019. [12] TROUILLON T,WELBL J,RIEDEL S,et al.Complex Embeddings for Simple Link Prediction[J].arXiv:1606.06357,2016. [13] YAO L,PENG J Z,MAO C S,et al.Exploring Large Language Models for Knowledge Graph Completion[J].arXiv:2308.13916,2023. [14] XU D,ZHANG Z,LIN Z,et al.Multi-perspective Improvement of Knowledge Graph Completion with Large Language Models[C]//Proceedings of the 2024 Joint International Conference on Computational Linguistics,Language Resources and Evaluation(LREC-COLING 2024).Torino,Italia:ELRA and ICCL,2024:11956-11968. [15] ZHANG Y,CHEN Z,GUO L B,et al.Making Large Language Models Perform Better in Knowledge Graph Completion[C]//Findings of the Association for Computational Linguistics:ACL 2024.IEEE Computer Society,2024:1-12. [16] SUN C,WANG H R,JING B X,et al.A Knowledge Reasoning Method Based on Hierarchical Reinforcement Learning [J].Application Research of Computers,2024,41(3):805-810. [17] LIU C C,SANG L,LI W,et al.A Method for Completing Multivariate Relationship Knowledge Graphs Driven by Large Language Models [J].Computer Science,2025,52(1):94-101. [18] LI J W,DENG Y D,CHEN B.Automatic Construction of Domain UML Models Based on Fine-tuned Qwen2[J].Computer Science,2025,52(S1):31-34. |
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