邓贤君 照片

邓贤君

教授 博士生导师

所属大学: 华中科技大学

所属学院: 网络空间安全学院

邮箱:
dengxj615@hust.edu.cn

个人主页:
http://faculty.hust.edu.cn/DENGXIANJUN/zh_CN/index.htm

个人简介

教育经历 2010.9 ~ 2014.3华中科技大学 工学博士学位 - 研究生(博士)毕业 2005.9 ~ 2008.6重庆邮电大学 工学硕士学位 - 研究生(硕士)毕业 2001.9 ~ 2005.7重庆邮电大学 本科(学士) 工作经历 2016.12-2020.9加拿大St. Francis Xavier University - Department of Computer Science - Postdoctoral Fellow 2020.11-至今华中科技大学 - 网络空间安全学院 - 教授

研究领域

物联网安全,社交网络安全,网络攻击检测与防御,隐私保护与可信推荐,网络可靠性

学术兼职

2021.2-至今The 20th IEEE International Conference on Trust, Security and Privacy in Computing and Communications (IEEE TrustCom 2021), Publicity Chair (宣传主席) 2021.3-至今The 23th IEEE International Conference on High Performance Computing and Communications (IEEE HPCC 2021), Program Chair (程序委员会主席) 2020.3-至今International Journal of Cognitive Computing in Engineering编委 2020.2-至今SCI期刊Connection Science编委 2017.12-至今IEEE 高级会员 (Senior Member) 2019.5-至今中国图象图形学学会图象视频通信专业委员会委员 2019.10-至今IEEE加拿大大西洋片区通信学会副主席

近期论文

[1] AI-Driven and MEC-Empowered Confident Information Coverage Hole Recovery in 6G-Enabled IoT.IEEE Transactions on Network Science and Engineering,(3): [2] ENSIOT: A Stacking Ensemble Learning Approach for loT Device ldentification.IEEE/ACM 32nd International Symposium on Quality of Service (IWQoS),2024, [3] Trust-Based Intrusion-Tolerant Coverage Reliability in Intelligent IoT Systems.IEEE Internet of Things Journal,2024,(15): [4] TrustGo: Trust Mining and Multi-semantic Regularization in Social Recommendation.2024 ACM SIGMM International Conference on Multimedia Retrieval,2024, [5] A Trust-based Reliable Confident Information Coverage Model of Wireless Sensor Networks for Intelligent Transportation.IEEE Transactions on Vehicular Technology, 2023,(72 ( 7 )): [6] Graph Sampling based Fairness-aware Recommendation over Sensitive Attribute Removal.IEEE International Conference on Data Mining,2023, [7] Collaborative Intelligent Confident Information Coverage Node Sleep Scheduling for 6G-Empowered Green IoT.IEEE Transactions on Green Communications and Networking,2022,(7(2)): [8] Tensor-based Confident Information Coverage Reliability of Mobile Internet of Things.IEEE Transactions on Mobile Computing,(25 ( 3 )): [9] Tensor-Empowered Federated Learning for Cyber-Physical-Social Computing and Communication Systems.IEEE Communications Surveys & Tutorials,(25(3)): [10] Tensor and Confident Information Coverage based Reliability Evaluation for Large-scale Intelligent Transportation Wireless Sensor Networks.IEEE Transactions on Vehicular Technology,VT-2022-04177,