郑倍雄
姓名 | 郑倍雄 |
教师编号 | 80587 |
性别 | 男 |
学校 | 华南理工大学 |
部门 | 华南理工大学 |
学位 | 副教授 |
学历 | 副教授 |
职称 | 副教授 |
联系方式 | 【发送到邮箱】 |
邮箱 | 【发送到邮箱】 |
人气 | |
软件产品登记测试 软件著作权666元代写全部资料 实用新型专利1875代写全部资料 集群智慧云企服 / 知识产权申请大平台 微信客服在线:543646 急速申请 包写包过 办事快、准、稳 |
更新日期:2024年4月10日 姓 名 郑倍雄 性 别 男 出生年月 籍贯 广东 民 族 汉族 政治面貌 中国共产党党员 最后学历 博士研究生 最后学位 工学博士 技术职称 副教授 导师类别 博、硕导 行政职务 Email bxzheng@scut.edu.cn 工作单位 华南理工大学 邮政编码 通讯地址 广州市天河区五山路381号 单位电话 个人主页 http://www2.scut.edu.cn/microelectronics/2020/0910/c25586a439767/page.htm 个人简介 郑倍雄,华南理工大学特聘研究员(Professor,硕/博导)。2018年6月于华南理工大学信息与通信工程专业获得博士学位,2016年在美国哥伦比亚大学访问学习一年,2019年-2022年期间担任新加坡国立大学研究员(Research Fellow)。2022年5月入职华南理工大学微电子学院/集成电路学院,同时兼岗电子与信息学院。主要研究方向为:5G/6G无线通信、卫星通信和海事通信、信号处理与最优化方法、大规模天线与毫米波通信技术、智能反射表面(可重构智能表面)技术、电磁隐身与干扰迷惑技术。已发表IEEE期刊论文55篇(其中第一/通信作者30篇,单篇最高影响因子35.6),IEEE会议论文27篇(其中第一作者14篇)。获中国授权发明专利8件,美国授权发明专利1件,其中2件共同拥有的授权发明专利分别以30万元和25万元技术转让。所发表论文获谷歌学术引用7500+次(单篇最高引用1800+次,h-index为32,i10-index为47),其中6篇论文入选ESI热点论文(学术领域前0.1%),13篇论文入选ESI高被引论文(学术领域前1%),3篇论文入选IEEE通信学会最佳读物,4篇论文长期位列IEEE JSAC/TCOM/WCL/CL重要期刊年度影响因子Top 5贡献论文,6篇论文曾位列IEEE TWC/TCOM/WCL/CL等重要期刊月度最受欢迎论文Top 3,1篇论文入选IEEE JCIN期刊封面文章。获2022年IEEE海因里希·赫兹最佳通信快报奖(全球每年1-2项,第一完成人)、2023年IEEE通信学会最佳教程论文奖(全球每年1项,第三完成人)、2022年广东省电子信息科学技术奖-自然科学奖一等奖(该年度仅1项,第二完成人)、2018年中国电子教育学会优秀博士学位论文奖、2016年IEEE ICNC最佳论文奖(第一完成人)、2023年IEEE Ucom最佳论文奖,以及连续三年(2021-2023年)入选全球前2%顶尖科学家榜单。目前担任国际重要SCI期刊《IEEE Communications Letters》(JCR-2区)编委,曾多次受邀担任通信领域顶级会议的技术委员会成员和研讨会/分会主席,以及担任10余本通信信息领域重要期刊的常规审稿人,并多次被授予IEEE期刊“优秀(模范)审稿人”称号。目前是IEEE Senior Member和中国通信学会高级会员。 2023年入选首批教育部海外引才专项(保密人才项目)。目前主持国家自然科学基金青年项目1项、国家自然科学基金重点项目(合作方负责人)1项、教育部中央高校优秀青年团队项目(课题负责人)1项、广东省自然科学基金面上项目1项,以及广州市科学技术局项目1项等。此外,主持完成博士后科学基金项目2项(特别资助和面上一等资助各1项);在新加坡国立大学工作期间,以Lead Researcher(第一核心研究成员)身份完成新加坡教育部、新加坡科技局、新加坡经济发展局以及新加坡华为公司资助项目4项;作为第一核心成员参与南方电网项目2项。累计主持各类项目9项,合计分担经费金额500多万。提出12项相关研究成果被纳入6G白皮书/研究报告,例如IMT-2030(6G)的《智能超表面技术研究报告》、中国移动研究院《2030+技术趋势白皮书》和RISTA的《智能超表面技术白皮书》。 工作经历 2024.04-至今,华南理工大学,特聘研究员(Professor)2022.05-2024.04,华南理工大学,准聘副教授(Associate Professor)2019.04-2022.05,新加坡国立大学,Research Fellow2018.07-2019.04,华南理工大学,博士后2013.04-2013.10,中国电信广州研究院,研究助理 教育经历 2013.06-2018.06, 华南理工大学, 博士2015.12-2016.12, 哥伦比亚大学, 公派联培博士2009.09-2013.06, 华南理工大学, 学士 获奖、荣誉称号 首批国家海外引才专项入选者,2023IEEE海因里希·赫兹最佳通信快报奖(全球每年1-2项,第一完成人),2022IEEE通信学会最佳教程论文奖(全球每年1项,第三完成人),2023广东省电子信息科学技术奖(自然科学奖一等奖,第二完成人),2022中国电子教育学会优秀博士学位论文,2018IEEE ICNC国际会议最佳论文奖(第一完成人),2016IEEE Ucom国际会议最佳论文奖,2023连续三年入选全球前2%顶尖科学家,2021-20233篇IEEE通信学会最佳读物(Best Readings),20206篇ESI热点论文(Web of Science工程技术领域最优秀的前0.1%),2018-202313篇ESI高被引论文(Web of Science工程技术领域最优秀的前1%),2018-2023IEEE Transactions on Communications优秀审稿人(获奖率≤2%),2020IEEE Communications Letters优秀审稿人(获奖率≤2%),2020Physical Communication (Elsevier)优秀审稿人,2018国家留学基金委优秀研究生公派项目奖学金,2015 社会、学会及学术兼职 国际期刊编委:IEEE Communications Letters(JCR-2区), 2021.08-至今国际会议研讨会/分会主席: -IEEE WCNC 2022专题“Reconfigurable Intelligent Surfaces for 5G and Beyond” 研讨会共同主席(Workshop Co-Chair), Austin, TX, USA -IEEE WCNC 2021专题“Reconfigurable Intelligent Surfaces for 5G and Beyond” 研讨会共同主席(Workshop Co-Chair), Nanjing, China -IEEE WiOpt 2023专题“Integrated Sensing and Communications (ISAC) ” 研讨会共同主席(Workshop Co-Chair), Singapore -IEEE ICCC 2022主题“Signal Processing for Communications” 分会主席(Session Chair), Foshan, China -UCMMT 2023会议出版共同主席(Publication Co-Chair), Guangzhou, ChinaRISTA前沿大讲堂系列第23期报告嘉宾,2022IEEE Senior Member中国通信学会高级会员全球性技术联盟“智能超表面技术联盟”单位成员代表,2022IEEE JSAC/TSP/TWC/TCOM/SPL/WCL/CL等国际重要SCI期刊常规审稿人IEEE ICC/Globecom/WCNC/ICNC/PIMRC等国际知名会议TPC/审稿人 研究领域 -5G/6G无线通信-卫星通信和海事通信-信号处理与最优化方法-大规模天线与毫米波通信技术-智能反射表面(可重构智能表面)技术-自适应电磁隐身与干扰迷惑技术(新方向) 科研项目 教育部海外引才专项(国家级),题目:多维信息传输增强理论与关键技术(资助金额:项目经费90万+国家补贴30万),项目主持(在研),2024-2026国家自然科学基金-重点项目,项目编号:62331022,题目:基于智能超表面的毫米波通感一体化理论与关键技术(资助金额:235万),合作方负责人(分担经费91.65万,在研),2024-2028国家自然科学基金-青年项目,项目编号:62201214,题目:高移动性场景下智能反射表面辅助通信的传输机制与部署策略研究(资助金额:30万),项目主持(在研),2023-2025中央高校优秀青年团队项目,项目编号:2023ZYGXZR106,题目:面向 6G 应用的通感一体化射频前端系统(资助金额:400万),课题负责人(分担经费100万,在研),2023-2024广东省基础与应用基础研究基金-面上项目,项目编号:2023A1515011753,题目:实现复杂无线环境智能调控的智能超表面信道建模分析和新型传输架构研究(资助金额:10万),项目主持(在研),2023-2025广州市科学技术局-青年博士“启航”项目,项目编号:SL2023A04J00790,题目:智能超表面辅助车载移动通信的传输理论方法研究(资助金额:5万),项目主持(在研),2024-2025博士后科学基金特别资助,项目编号:2019T120731,题目:基于信息附加理论的新型索引调制技术研究及应用探索(资助金额:18万),项目主持(已结题),2019-2020博士后科学基金面上资助(一等),项目编号:2018M640781,题目:实现索引信息隐性传输的新型数字调制技术研究(资助金额:8万),项目主持(已结题),2018-2020Agency for Science, Technology and Research (A*STAR) (Singapore),Project Number:R-263-000-D52-305,Title:High Performance Space-Borne VDES Capabilities on Small Satellite (Funding Amount: S$420,000),Lead researcher,2019-2022Economic Development Board (EDB) (Singapore),Project Number:R-263-000-F20-592,Title:Designing a Space-based VHF Voice Communication System (Funding Amount: S$187,000),Lead researcher ,2021-2022Ministry of Education (MOE) Academic Research Fund (AcRF) Tier 2 (Singapore),Project Number:T2EP50120-0024,Title:Design of Intelligent Reflecting Surface for Reconfigurable Wireless Propagation (Funding Amount: S$609,120),Main researcher,2020-2022 NUS Advanced Research and Technology Innovation Centre (ARTIC) (Singapore),Project Number:R-261-518-005-720,Title:Making Wireless Communication Environment Smart and Reconfigurable via Intelligent Reflecting Surfaces: A Network Optimization Perspective (Funding Amount: S$402,840),Main researcher,2020-2022南方电网项目,题目:基于窄带物联网通信技术的分布式光伏通信设备研发(资助金额:215.3万),第一核心成员,2022-2024(在研)南方电网项目,题目:基于低功耗物联网技术的输电杆塔实时状态智能监测系统研发(资助金额:191.3万),第一核心成员,2022-2024(在研)国家自然科学基金-联合基金重点项目,项目编号:U1701265,题目:面向海洋信息可靠传输的声电融合网络基础理论与技术(资助金额:270万),参与(已结题)国家自然科学基金-面上项目,项目编号:61871190,题目:序号调制技术在未来无线网络中的应用研究(资助金额:63万),主要研究人员国家自然科学基金-重点项目,项目编号:61431005,题目:水下动态多节点自动接入与组网基础研究(资助金额:360万),参与(结题)国家自然科学基金-面上项目,项目编号:61671211,题目:基于载波序号调制的水声多载波通信技术研究(资助金额:56万),参与(结题)国家自然科学基金-面上项目,项目编号:61671208,题目:具有时空动态性的水下传感器网络高效组网与可靠数据收集技术研究(资助金额:58万),参与(结题)国家自然科学基金-青年项目,项目编号:61501190,题目:基于序号调制的MIMO-OFDM系统容量增强技术研究(资助金额:23万),参与(结题) 发表论文 一、期刊论文J1. B. Zheng and R. Zhang, “Intelligent reflecting surface-enhanced OFDM: Channel estimation and reflection optimization,” IEEE Wireless Commun. Lett., vol. 9, no. 4, pp. 518-522, Apr. 2020. (IEEE Heinrich Hertz Award for Best Communications Letter, ESI Hot Paper & Highly Cited Paper)J2. Q. Wu, S. Zhang, B. Zheng, C. You, and R. Zhang, “Intelligent reflecting surface aided wireless communications: A tutorial,” IEEE Trans. Commun., vol. 69, no. 5, pp. 3313–3351, May 2021. (The IEEE Communications Society Best Tutorial Paper Award, ESI Hot Paper & Highly Cited Paper)J3. B. Zheng, Q. Wu, and R. Zhang, “Intelligent reflecting surface-assisted multiple access with user pairing: NOMA or OMA?” IEEE Commun. Lett., vol. 24, no. 4, pp. 753-757, Apr. 2020. (ESI Highly Cited Paper, IEEE ComSoc Best Readings, Top Popular Article in IEEE CL)J4. B. Zheng, F. Chen, M. Wen, F. Ji, H. Yu, and Y. Liu, “Low-complexity ML detector and performance analysis for OFDM with in-phase/quadrature index modulation,” IEEE Commun. Lett., vol. 19, no. 11, pp. 1893-1896, Nov. 2015. (ESI Hot Paper & Highly Cited Paper)J5. B. Zheng, M. Wen, E. Basar, and F. Chen, “Multiple-input multiple-output OFDM with index modulation: Low-complexity detector design,” IEEE Trans. Signal Process., vol. 65, no. 11, pp. 2758-2772, Jun. 2017. (ESI Highly Cited Paper)J6. B. Zheng, C. You, W. Mei, and R. Zhang, “A Survey on channel estimation and practical passive beamforming design for intelligent reflecting surface aided wireless communications,” IEEE Communications Surveys & Tutorials, vol. 24, no. 2, pp. 1035-1071, Second quarter 2022. (IF: 35.6, ESI Hot Paper & Highly Cited Paper)J7. B. Zheng, C. You, and R. Zhang, “Intelligent reflecting surface assisted multi-user OFDMA: Channel estimation and training design,” IEEE Trans. Wireless Commun., vol. 19, no. 12, pp. 8315-8329, Dec. 2020. (ESI Highly Cited Paper, Top Popular Article in IEEE TWC)J8. B. Zheng, C. You, and R. Zhang, “Double-IRS assisted multi-user MIMO: Cooperative passive beamforming design,” IEEE Trans. Wireless Commun., vol. 20, no. 7, pp. 4513–4526, Jul. 2021. (ESI Highly Cited Paper, Top Popular Article in IEEE TWC)J9. B. Zheng, C. You, and R. Zhang, “Efficient channel estimation for double-IRS aided multi-user MIMO system,” IEEE Trans. Commun., vol. 69, no. 6, pp. 3818–3832, Jun. 2021. (Top Popular Article in IEEE TCOM)J10. B. Zheng, S. Lin, and R. Zhang, “Intelligent reflecting surface-aided LEO satellite communication: Cooperative passive beamforming and distributed channel estimation,” IEEE J. Sel. Areas Commun., vol. 40, no. 10, pp. 3057-3070, Oct. 2022.J11. B. Zheng and R. Zhang, "Simultaneous transmit diversity and passive beamforming with large-scale intelligent reflecting surface," IEEE Trans. Wireless Commun., vol. 22, no. 2, pp. 920-933, Feb. 2023.J12. B. Zheng, C. You, and R. Zhang, “Fast channel estimation for IRS-assisted OFDM,” IEEE Wireless Commun. Lett., vol. 10, no. 3, pp. 580–584, Mar. 2021. (Popular Article in IEEE WCL)J13. B. Zheng and R. Zhang, “IRS meets relaying: Joint resource allocation and passive beamforming optimization,” IEEE Wireless Commun. Lett., vol. 10, no. 9, pp. 2080–2084, Sept. 2021. (Popular Article in IEEE WCL)J14. B. Zheng, M. Wen, C.-X. Wang, X. Wang, F. Chen, J. Tang, and F. Ji, “Secure NOMA based two-way relay networks using artificial noise and full duplex,” IEEE J. Sel. Areas Commun., vol. 36, no. 7, pp. 1426-1440, Jul. 2018.J15. B. Zheng, X. Wang, M. Wen, and F. Chen, “NOMA-based multi-pair two-way relay networks with rate splitting and group decoding,” IEEE J. Sel. Areas Commun., vol. 35, no. 10, pp. 2328-2341, Oct. 2017.J16. B. Zheng, X. Wang, M. Wen, and F. Chen, “Soft demodulation algorithms for generalized spatial modulation using deterministic sequential Monte Carlo,” IEEE Trans. Wireless Commun., vol. 16, no. 6, pp. 3953-3967, Jun. 2017.J17. B. Zheng, F. Chen, M. Wen, F. Ji, and H. Yu, “Novel pilot position selection and signal reconstruction methods for frequency domain pilot multiplexing techniques of SC-FDE,” IEEE Trans. Veh. Technol., vol. 66, no. 1, pp. 502-512, Jan. 2017.J18. B. Zheng, M. Wen, F. Chen, N. Huang, F. Ji, and H. Yu, “The K-best sphere decoding for soft detection of generalized spatial modulation,” IEEE Trans. Commun., vol. 65, no. 11, pp. 4803-4816, Nov. 2017.J19. B. Zheng, F. Chen, Q. Guan, M. Wen, H. Yu, and F. Ji, “Novel pilot design and signal detection for SC-FDE systems with frequency-domain pilot multiplexing technique,” IEEE Commun. Lett., vol. 19, no. 8, pp. 1466-1469, Aug. 2015.J20. B. Zheng, M. Wen, S. Lin, W. Wu, F. Chen, S. Mumtaz, Fei Ji, and Hua Yu, “Design of multi-carrier LBT for LAA & WiFi coexistence in unlicensed spectrum,” IEEE Netw., vol. 34, no. 1, pp. 76-83, Jan./Feb. 2020.J21. C. You, B. Zheng*, and R. Zhang, “Channel estimation and passive beamforming for intelligent reflecting surface: Discrete phase shift and progressive refinement,” IEEE J. Sel. Areas Commun., vol. 38, no. 11, pp. 2604-2620, Nov. 2020. (ESI Highly Cited Paper, Popular Article in IEEE JSAC, IEEE ComSoc Best Readings)J22. C. You, B. Zheng*, and R. Zhang, “Fast beam training for IRS-assisted multiuser communications,” IEEE Wireless Commun. Lett., vol. 9, no. 11, pp. 1845-1849, Nov. 2020. (Popular Article in IEEE WCL)J23. C. You, B. Zheng*, and R. Zhang, “Wireless communication via double IRS: Channel estimation and passive beamforming designs,” IEEE Wireless Commun. Lett., vol. 10, no. 2, pp. 431-435, Feb. 2021. (Popular Article in IEEE WCL)J24. Z. Huang, B. Zheng*, and R. Zhang, “Transforming fading channel from fast to slow: Intelligent refracting surface aided high-mobility communication,” IEEE Trans. Wireless Commun., vol. 21, no. 7, pp. 4989-5003, Jul. 2022.J25. X. Xiong, B. Zheng*, A. L. Swindlehurst, J. Tang and W. Wu, "A new intelligent reflecting surface-aided electromagnetic stealth strategy," IEEE Wireless Commun. Lett., Early Access, 2024.J26. S. Lin, B. Zheng*, F. Chen and R. Zhang, "Intelligent reflecting surface-aided spectrum sensing for cognitive radio," IEEE Wireless Commun. Lett., vol. 11, no. 5, pp. 928-932, May 2022.J27. C. You, B. Zheng*, W. Mei, and R. Zhang, “How to deploy intelligent reflecting surfaces in wireless network: BS-side, user-side, or both sides?” J. Commun. Inf. Netw., Mar. 2021. (Cover Paper)J28. S. Lin, B. Zheng*, F. Chen, F. Ji, and H. Yu, “Soft demodulators based on deterministic SMC for single-carrier GSM in broadband channels,” IEEE J. Sel. Areas Commun., vol. 37, no. 9, pp. 1973-1985, Sept. 2019.J29. J. Feng, B. Zheng*, C. You, F. Chen, S. Zhao, W. Che, and Q. Xue “Joint passive beamforming and deployment design for dual distributed-IRS aided communication,” IEEE Trans. Veh. Technol, vol. 72, no. 10, pp. 13758-13763, Oct. 2023. J30. K. Tang, B. Zheng*, F. Jiao, X. Liu, W. Feng, W. Che, and Q. Xue “Joint resource allocation for maximizing energy efficiency in mmWave-based wireless-powered communication networks,” IEEE Trans. Veh. Technol, Early Access, 2024.J31. J. Feng, F. Chen, B. Zheng*, C. You, J. Tang and F. Zhou, "Intelligent Reflecting Surface-Aided Wireless Relaying Communication: Active or Passive?," IEEE Wireless Commun. Lett., Early Access, 2024.J32. Y. Yang, B. Zheng, S. Zhang, and R. Zhang, “Intelligent reflecting surface meets OFDM: Protocol design and rate maximization,” IEEE Trans. Commun., vol. 68, no. 7, pp. 4522-4535, Jul. 2020. (ESI Hot Paper, ESI Highly Cited Paper, Popular Article in IEEE TCOM)J33. W. Mei, B. Zheng, C. You, and R. Zhang, “Intelligent reflecting surface-aided wireless networks: From single-reflection to multi-reflection design and optimization,” Proceedings of the IEEE, vol. 110, no. 9, pp. 1380-1400, Sept. 2022. (Invited Paper, IF: 14.91)J34. Z. Huang, B. Zheng, and R. Zhang, "Roadside IRS-aided vehicular communication: Efficient channel estimation and low-complexity beamforming design," IEEE Trans. Wireless Commun., vol. 22, no. 9, pp. 5976-5989, Sept. 2023.J35. S. Lin, B. Zheng, G. C. Alexandropoulos, M. Wen, F. Chen, and S. Mumtaz, “Adaptive transmission for reconfigurable intelligent surface-assisted OFDM wireless communications,” IEEE J. Sel. Areas Commun., vol. 38, no. 11, pp. 2653-2665, Nov. 2020. (Popular Article in IEEE JSAC)J36. S. Lin, B. Zheng, G. C. Alexandropoulos, M. Wen, M. Di Renzo, and F. Chen, “Reconfigurable intelligent surfaces with reflection pattern modulation: Beamforming design and performance analysis,” IEEE Trans. Wireless Commun., vol. 20, no. 2, pp. 741-754, Feb. 2021. (ESI Highly Cited Paper, Popular Article in IEEE TWC)J37. M. Wen, B. Zheng, K. J. Kim, M. Di Renzo, T. A. Tsiftsis, Kwang-Cheng Chen, and Naofal Al-Dhahir, “A survey on spatial modulation in emerging wireless systems: Research progresses and applications,” IEEE J. Sel. Areas Commun., vol. 37, no. 9, pp. 1949-1972, Sept. 2019. (ESI Hot Paper, ESI Highly Cited Paper)J38. M. Wen, B. Zheng, Q. Guan, F. Chen, H. Yu, and F. Ji, “Novel pilot position detection for SC-FDE systems with frequency domain pilot multiplexing technique,” IEEE Signal Process. Lett., vol. 23, no. 7, pp. 910-914, Jul. 2016.J39. Y. Zhang, C. You, and B. Zheng, “Multi-active multi-passive (MAMP)-IRS aided wireless communication: A multi-hop beam routing design,” IEEE J. Sel. Areas Commun., vol. 41, no. 8, pp. 2497-2513, Aug. 2023.J40. P. Chen, Z. Chen, B. Zheng and X. Wang, "Efficient DOA estimation method for reconfigurable intelligent surfaces aided UAV swarm," IEEE Trans. Signal Process., vol. 70, pp. 743-755, Jan. 2022.J41. Y. Huang, M. Wen, B. Zheng, X. Cheng, L. Yang, and F. 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Global Oceans 2020: Singapore – U.S. Gulf Coast, Biloxi, MS, USA, Oct. 2020, pp. 1-4. 科研创新 1.Adaptive RLS decision feedback equalizing system and implementation method thereof, 美国授权发明专利, US10396904B2, 20190826, 2/52. 基于分组数据失真最小化的导频位置选择方法及装置, 中国授权发明专利(已转让,转让金额:30万), ZL201510363153.7, 20180412, 2/63.用于MIMO-OFDM-IM的低复杂度ML 接收机方法, 中国授权发明专利(已转让,转让金额:25万), ZL201810416479.5, 20200619, 5/54.一种基于确定性序贯蒙特卡罗算法的软解调方法及装置, 中国授权发明专利, ZL201910254769.9, 20211026, 1/65.基于判决门限的最优导频位置插入方法及装置, 中国授权发明专利, ZL201510359116.9, 20180227, 2/66.基于智能反射表面进行波束赋形的信息传输方法, 中国授权发明专利, ZL202010985106.7, 20211221, 4/47.一种分层k-best球形译码方法及装置, 中国授权发明专利, ZL201910254781.X, 20210921, 2/68.一种频域导频复用技术的信号失真重建方法及装置, 中国授权发明专利, ZL201510287894.1, 20180227, 2/69.一种自适应RLS判决反馈均衡系统及其实现方法, 中国授权发明专利, ZL201410180984.6, 20170405, 2/6 教学活动 《通信原理》、《通信原理实验》 指导学生情况 在研究生培养方面,独立指导研究生共8名,目前均为在读状态。指导两名博士研究生以第一作者在国际重要SCI期刊IEEE Transactions on Vehicular Technology(JCR-1区,影响因子 6.8)和IEEE Wireless Communications Letters(JCR-1区,影响因子 6.3)上发表论文3篇,本人为主要指导老师兼唯一通信作者。J. Feng(本人指导博士生), B. Zheng*, C. You, F. Chen, S. Zhao, W. Che, and Q. Xue “Joint passive beamforming and deployment design for dual distributed-IRS aided communication,” IEEE Trans. Veh. Technol, vol. 72, no. 10, pp. 13758-13763, Oct. 2023. X. Xiong(本人指导博士生), B. Zheng*, A. L. Swindlehurst, J. Tang and W. Wu, "A new intelligent reflecting surface-aided electromagnetic stealth strategy," IEEE Wireless Commun. Lett., Early Access, 2024.J. Feng(本人指导博士生), F. Chen, B. Zheng*, C. You, J. Tang and F. Zhou, "Intelligent Reflecting Surface-Aided Wireless Relaying Communication: Active or Passive?," IEEE Wireless Commun. Lett., Early Access, 2024. 指导两名直博生以第二作者身份在通信旗舰会议IEEE International Conference on Communications上发表论文3篇,本人为主要指导老师兼第一作者。B. Zheng, X. Xiong, J. Tang, and R. Zhang, “Target-mounted intelligent reflecting surface for electromagnetic stealth,” in Proc. IEEE Int. Conf. Commun. (ICC), Denver, CO, USA, Jun. 2024, pp. 1-6. B. Zheng, T. Ma, J. Tang, C. You, S. Lin, and K.-K. Wong, “Joint transmit diversity and active/passive precoding design for RIS-aided multiuser communication,” in Proc. IEEE Int. Conf. Commun. (ICC), Denver, CO, USA, Jun. 2024, pp. 1-6. B. Zheng, T. Ma, X. Yi, and S. Lin, “Intelligent reflecting surface-aided transmit diversity and performance analysis,” in Proc. IEEE Int. Conf. Commun. (ICC), Rome, Italy, Jun. 2023, pp. 1-6. 指导四名研究生申请4件发明专利:郑倍雄, 冯杰, 林少娥, 陈芳炯, 官权升, 朱祖祺.一种双智能反射面辅助通信的联合波束赋形和部署方法: 202310526942.2[P]. 2023-05-11. 指导一名学生获得校级优秀毕业设计(论文) 我的团队 博士生:冯杰、马甜甜、熊雪、吴庆捷硕士生:刘之沛、郑逸帆、戴亮、代奇、叶雯、詹国庆、潘科丞、朱韦华本科生(SRP项目):黄一铖(信息工程创新班)、段宇飞(信息工程创新班)、张栩函(信息工程创新班)、刘建良(信息工程创新班)、何零一(微电子)、任鑫宇(微电子)、罗帝文(集电)、许灏轩(集电) |