教授 博士生导师 硕士生导师
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所在单位:清华大学
学历:研究生(博士后)
办公地点:清华大学罗姆楼10层207房间
在职信息:在职
专著
1. Fan Yang, Yahya Rahmat-Samii, Surface Electromagnetics: With Applications in Antenna, Microwave, and Optical Engineering, Cambridge University Press, 2019
2. Payam Nayeri, Fan Yang, Atef Z. Elsherbeni, Reflectarray Antennas: Theory, Designs and Applications, Wiley-IEEE Press, 2018
3. Ahmed H. Abdelrahman, Fan Yang, Atef Z. Elsherbeni, Payam Nayeri, Analysis and Design of Transmitarray Antennas, Morgan & Claypool Publishers, 2017
4. Khaled ElMahgoub, Fan Yang, and Atef Z. Elsherbeni, Scattering Analysis of Periodic Structures Using Finite-Difference Time-Domain Method, Morgan & Claypool Publishers, 2012.
5. Fan Yang and Yahya Rahmat-Samii, Electromagnetic Band Gap Structures in Antenna Engineering, Cambridge University Press, 2008.
6. Wei-Chung Weng, Fan Yang, and Atef Elsherbeni, Electromagnetics and Antenna Optimization Using Taguchi’s Method, Morgan & Claypool Publishers, 2007
专著章节
2019
1. Fan Yang, Hossein Mossallaei, and Yahya Rahmat-Samii, “Chapter 37: Low-profile Antenna on Engineered Electromagnetic Surfaces”, Antenna Engineering Handbook, 5th Ed., edited by John L. Volakis, McGrawS-Hill Education, 2019
2016
1. Shenheng Xu and Fan Yang, "Reflectarray Antennas", Handbook of Antenna Technologies, Springer, 2016
2009
1. Ji Chen, Fan Yang, and Rui Qiang, “Chapter 6: FDTD method for periodic structures”, Handbook of Artificial Materials, edited by F. Capolino, Taylor and Francis - CRC Press, 2009.
2. Yahya Rahmat-Samii and Fan Yang “Applications of EBG in low profile antenna designs: what have we learned?” Metamaterials and Plasmonics: Fundamentals, Modelling, Applications, NATO Series, 2009.
3. Bassem H. Henin, Atef Z. Elsherbeni , Mohamed H. Al Sharkawy, and Fan Yang “Line source excitation of an array of circular metamaterial cylinders: boundary value solution and applications”, Metamaterials and Plasmonics: Fundamentals, Modelling, Applications, NATO Series, 2009.
2007
1. Fan Yang, Hossein Mossallaei, and Yahya Rahmat-Samii, "Chapter 34: Low profile antenna performance enhancement utilizing engineered electromagnetic materials", Antenna Engineering Handbook, 4th Ed., edited by J. Volakis, McGrawS-Hill Inc., June 2007.
2006
1. Yahya Rahmat-Samii and Fan Yang, "Chapter 12: Development of complex artificial ground planes in antenna engineering", Metamaterials: Physics and Engineering Explorations, edited by N. Engheta and R. Ziolkowski, John Wiley & Sons Inc., 2006.
刊物论文
1. Xingliang Zhang; Fan Yang; Shenheng Xu; Maokun Li; Single-Layer Reflectarray Antenna With Independent Dual-CP Beam Control, IEEE Antennas and Wireless Propagation Letters, vol. 19, no. 4, pp. 532-536, Apr. 2020.
2. Xibi Chen; Fan Yang; Maokun Li; Shenheng Xu; Analysis of Nonlinear Metallic Metasurface Elements Using Maxwell-Hydrodynamic Model With Time-Domain Perturbation Method, IEEE Transactions on Antennas and Propagation, 2020, 68(3): 2213-2223.
3. Xiao Liu; Fan Yang*; Maokun Li; Shenheng Xu; Generalized Boundary Conditions in Surface Electromagnetics: Fundamental Theorems and Surface Characterizations, Applied Sciences, 2019, 9(9): 1-28.
4. Fan Yang; Ruyuan Deng*; Shenheng Xu; Maokun Li; Design and Experiment of a Near-Zero-Thickness High-Gain Transmit-Reflect-Array Antenna Using Anisotropic Metasurface, IEEE Transactions on Antennas and Propagation, 2018, 66(6): 2853-2861.
5. Fan Yang, Jun Luo; Shenheng Xu; and Maokun Li; Design of Artificial Matching Layers With Arbitrary Permittivity Using a Metasurface, IEEE Antennas and Wireless Propagation Letters, vol. 17, no. 8, pp. 1445-1448, Aug. 2018.
6. 杨帆; 许慎恒; 刘骁; 杨雪; 潘笑天; 王敏; 肖钰; 李懋坤; 基于界面电磁学的新型相控阵天线, 电波科学学报, 2018, 33(3): 256-265.
7. Huanhuan Yang; Fan Yang; Xiangyu Cao; Shenheng Xu; Jun Gao; Xibi Chen; Maokun Li; and Tong Li; A 1600-Element Dual-Frequency Electronically Reconfigurable Reflectarray at X/Ku-Band, IEEE Transactions on Antennas and Propagation, vol. 65, no. 6, pp. 3024-3032, June 2017.
主要研究方向包括现代天线理论、设计与测量,新型电磁材料的探索和应用,电磁场数值算法与优化,以及应用电磁系统的研究与开发。目前已承担国家863、973、总装、自然科学基金、重点研发等多个重大国家科研项目,并主持建设清华大学电磁实验中心。
研究成果和产学研方向:
研究主要集中于具有低成本、低功耗、易共形等优点的新型相控电磁表面天线,成果主要为10240单元超大口径天线、应用于安检成像、探鸟雷达、便携式雷达的天线,已获得国内外发明专利授权10余项,成果转化2项,产生直接经济效益百万级,间接经济效益千万级。产学研方向主要为面向于通信、雷达领域的新型相控阵天线。现代天线理论、设计与测量,新型电磁材料的探索和应用,电磁场数值算法与优化,以及应用电磁系统的研究与开发微波射频技术在5G及6G以后的通信应用中将扮演重要角色,采用数字相控电磁表面技术的相控阵天线具备低成本、高性能、结构简单等优势,适用于5G毫米波通信天线等应用领域,在国家工业与信息化部批复4.8G、26G和39G用于我国5G技术研发试验后,该技术的成功应用将有助于加速5G产业链的成熟发展。