的个人主页 http://shi.buaa.edu.cn/liqingchao/zh_CN/index.htm
李庆超,北京航空航天大学电子信息工程学院副教授,国家级青年人才,博士毕业于英国南安普顿大学,研究方向包括可重构智能超表面(RIS)、全息MIMO、无蜂窝通信网络与低轨卫星通信网络等前沿无线通信技术。主要围绕新型MIMO架构、硬件受限下的波束赋形、空天地一体组网、通信感知融合等方向开展了系统研究,以第一作者身份在IEEE TWC、TCOM、TVT、IoT J、Network等期刊发表SCI论文19篇,授权3项美国发明专利,担任30余个IEEE期刊审稿人,2024年获得IEEE WCL期刊模范审稿人奖。欢迎来自无线通信、导航、感知与航空交叉领域的研究者与我合作交流。
期刊论文:
[1] Qingchao Li, Mohammed El-Hajjar, Kaijun Cao, Chao Xu, Harald Haas, Lajos Hanzo, “Holographic Metasurface-Based Beamforming for Multi-Altitude LEO Satellite Networks” [J]. IEEE Transactions on Wireless Communications, 2025, 24(4): 3103-3116.
[2] Qingchao Li, Mohammed El-Hajjar, Yanshi Sun, Lajos Hanzo, “Performance Analysis of Reconfigurable Holographic Surfaces in the Near-Field Scenario of Cell-Free Networks Under Hardware Impairments” [J]. IEEE Transactions on Wireless Communications, 2024, 23(9): 11972-11984.
[3] Qingchao Li, Mohammed El-Hajjar, Yanshi Sun, Ibrahim Hemadeh, Arman Shojaeifard, Yuanwei Liu, Lajos Hanzo, “Achievable Rate Analysis of the STAR-RIS Aided NOMA Uplink in the Face of Imperfect CSI and Hardware Impairments” [J]. IEEE Transactions on Communications, 2023, 71(10): 6100-6114.
[4] Qingchao Li, Mohammed El-Hajjar, Yanshi Sun, Ibrahim Hemadeh, Arman Shojaeifard, Lajos Hanzo, “Energy-Efficient Reconfigurable Holographic Surfaces Operating in the Presence of Realistic Hardware Impairments” [J]. IEEE Transactions on Communications, 2024, 72(8): 5226-5238.
[5] Qingchao Li, Mohammed El-Hajjar, Chao Xu, Jiancheng An, Chau Yune, Lajos Hanzo, “Stacked Intelligent Metasurfaces for Holographic MIMO Aided Cell-Free Networks” [J]. IEEE Transactions on Communications, 2024.
[6] Qingchao Li, Mohammed El-Hajjar, Lajos Hanzo, “Ergodic Spectral Efficiency Analysis of Intelligent Omni-Surface Aided Systems Suffering From Imperfect CSI and Hardware Impairments” [J]. IEEE Transactions on Communications, 2024, 72(8): 5073-5086.
[7] Qingchao Li, Mohammed El-Hajjar, Chao Xu, Jiancheng An, Chau Yuen, Lajos Hanzo, “Stacked Intelligent Metasurface-Based Transceiver Design for Near-Field Wideband Systems” [J]. IEEE Transactions on Communications, 2025.
[8] Qingchao Li, Mohammed El-Hajjar, Ibrahim Hemadeh, Arman Shojaeifard, Alain A. M. Mourad, Bruno Clerckx, Lajos Hanzo. “Reconfigurable Intelligent Surfaces Relying on Non-Diagonal Phase Shift Matrices” [J]. IEEE Transactions on Vehicular Technology, 2022, 71(6): 6367-6383.
[9] Qingchao Li, Mohammed El-Hajjar, Ibrahim Hemadeh, Deepa Jagyasi, Arman Shojaeifard, Lajos Hanzo, “Performance Analysis of Active RIS-aided Systems in the Face of Imperfect CSI and Phase Shift Noise” [J]. IEEE Transactions on Vehicular Technology, 2023, 72(6): 8140-8145.
[10] Qingchao Li, Mohammed El-Hajjar, Ibrahim Hemadeh, Arman Shojaeifard, Alain A. M. Mourad, Lajos Hanzo, “Reconfigurable Intelligent Surface Aided Amplitude- and Phase-Modulated Downlink Transmission” [J]. IEEE Transactions on Vehicular Technology, 2023, 72(6): 8146-8151.
[11] Qingchao Li, Mohammed El-Hajjar, Ibrahim Hemadeh, Arman Shojaeifard, Lajos Hanzo, “Low-Overhead Channel Estimation for RIS-Aided Multi-Cell Networks in the Presence of Phase Quantization Errors” [J]. IEEE Transactions on Vehicular Technology, 2024, 73(5): 6626-6641.
[12] Qingchao Li, Mohammed El-Hajjar, Yanshi Sun, Ibrahim Hemadeh, Arman Shojaeifard, Lajos Hanzo, “Achievable Rate Analysis for Intelligent Omni-Surfaces Assisted NOMA Holographic MIMO Systems” [J]. IEEE Transactions on Vehicular Technology, 2024, 73(5): 7400 -7405.
[13] Qingchao Li, Mohammed El-Hajjar, Ibrahim Hemadeh, Arman Shojaeifard, Lajos Hanzo, “Coordinated Reconfigurable Intelligent Surfaces: Non-Diagonal Group-Connected Design” [J]. IEEE Transactions on Vehicular Technology, 2024, 73(7): 10811-10816.
[14] Qingchao Li, Mohammed El-Hajjar, Chao Xu, Chao Zhang, Lajos Hanzo, “Hierarchical Beamforming Design for XL-MIMO with Hardware Impairments in Cell-Free Networks” [J]. IEEE Transactions on Vehicular Technology, 2025.
[15] Qingchao Li, Mohammed El-Hajjar, Ibrahim Hemadeh, Deepa Jagyasi, Arman Shojaeifard, Ertugrul Basar, and Lajos Hanzo, “The Reconfigurable Intelligent Surface-Aided Multi-Node IoT Downlink: Beamforming Design and Performance Analysis” [J], IEEE Internet of Things Journal, 2023, 10(7): 6400-6414.
[16] Qingchao Li, Mohammed El-Hajjar, Chao Xu, Kunlun Li, Xinyu Feng, Lajos Hanzo, “Holographic MIMO Aided Integrated User-Centric Cell-Free Terrestrial and Non-Terrestrial Networks” [J], IEEE Network, 2025.
[17] Qingchao Li, “The Asymmetric-Distance Metrics for Decoding of Convolutional Codes in Diffusion-Based Molecular Communications” [J]. IEEE Transactions on NanoBioscience, 2019, 18(3): 469-481.
[18] Qingchao Li, “The Clock-Free Asynchronous Receiver Design for Molecular Timing Channels in Diffusion-Based Molecular Communications” [J]. IEEE Transactions on NanoBioscience, 2019, 18(4): 585-596.
[19] Qingchao Li, “A Novel Time-Based Modulation Scheme in Time-Asynchronous Channels for Molecular Communications” [J]. IEEE Transactions on NanoBioscience, 2020, 19(1): 59-67.
[20] Yinuo Dong, Qingchao Li, Soon Xin Ng, Mohammed El-Hajjar, “Reconfigurable Intelligent Surface Relying on Low-complexity Joint Sector Non-diagonal Structure” [J]. IEEE Open Journal of Vehicular Technology, 2024, 5: 1106-1123.
[21] Chao Zhang, Qingchao Li, Chao Xu, Lie-Liang Yang, Lajos Hanzo, “Space-Air-Ground Integrated Networks: Their Channel Model and Performance Analysis” [J]. IEEE Open Journal of Vehicular Technology, 2025.
[22] Qingchao Li, and Hui. Li, “A Receiver Design for Molecule Shift Keying Modulation in Diffusion-Based Molecular Communications” in Proceedings of IEEE/CIC International Conference on Communications in China, Aug. 2019, pp. 261-265.
[23] Qingchao Li, Mohammed El-Hajjar, Ibrahim Hemadeh, Arman Shojaeifard, Lajos Hanzo, “Low-Complexity Channel Estimation for RIS-Assisted Multi-User Wireless Communications” in Proceedings of the IEEE International Conference on Communications, Jun. 2025, (Accepted on 18th Jan 2025).
英国南安普顿大学  电子与电气工程  博士研究生毕业  哲学博士学位
中国科学技术大学  信息与通信工程  硕士研究生毕业  工学硕士学位
北京科技大学  自动化(第二专业:电子信息工程)  大学本科毕业  工学学士学位
北京航空航天大学 电子信息工程学院 副教授
英国南安普顿大学 博士后研究员
团队介绍:“空地一体新航行系统技术全国重点实验室”具备雄厚的科研实力和工程化应用能力,在航空通信、空中交通管理、空天地一体化信息传输等领域积累了丰富的理论与技术经验。实验室构建了多个先进的科研平台,包括空天地一体化信息传输与处理平台、空中交通综合监视平台、空地协同管制实验系统,形成了完整的仿真测试与实验验证环境。