江帆

作者: 时间:2025-03-06 点击数:

姓名       江帆   英文拼写   Fan Jiang

所属学院:

物理与光电工程学院

导师类别:

硕导

科研方向:

电磁场与微波技术、天线设计

联系方式:

fjiangaa@gdut.edu.cn

硕士招生学院:

物理与光电工程学院


个人简述

(限300字)



广东工业大学物理与光电工程学院“青年百人计划”特聘副教授、硕士生导师。2014年在电子科技大学获本科学位,2017年在法国布列塔尼国立高等电信学校获得硕士学位,2021年在香港科技大学获得博士学位,导师为Ross Murch教授。主要的研究方向包括电磁场与微波技术、天线设计等。2021-2023年,在华为技术有限公司担任高级工程师。目前已发表国际学术论文30余篇,涵盖了包括IEEE TAPIEEE AWPL和IEEE MWCL等领域顶级国际期刊。

学科领域



电子科学与技术;电磁场与微波技术

教育背景



2010/09-2014/07,电子科技大学,电子信息科学与技术,学士

2014/09-2017/07,法国布列塔尼国立高等电信学校,工程师科学,硕士

2017/09-2021/07,香港科技大学,电子与计算机工程,博士

工作经历



2021/08-2023/05,华为技术有限公司,2012实验室,高级工程师

2023/06-至今,广东工业大学,物理与光电工程学院,青百副教授、硕导

主要论文



[1] F. Jiang, C. Chiu, S. Shen, Q. S. Cheng, and R. Murch, “Pixel antenna optimization using n-port characteristic mode analysis,” IEEE Trans. Antennas Propag., vol. 68, no. 5, pp. 3336-3347, 2020.

[2] F. Jiang et al., “Multiport Pixel Antenna Optimization Using Characteristic Mode Analysis and Sequential Feeding Port Search,” IEEE Trans. Antennas Propag., vol. 70, no. 10, pp. 9160-9174, Oct. 2022.

[3] F. Jiang, C. Chiu, S. Shen, Q. S. Cheng, and R. Murch, “Pixel Antenna Optimization based on Perturbation Sensitivity Analysis,” IEEE Trans. Antennas Propag., vol. 70, no. 1, pp. 472-486, Jan. 2022.

[4] F. Jiang, C. Chiu, Z. Zhang, Q. S. Cheng, and R. Murch, “An Efficient Optimization Scheme for MIMO Antenna Decoupling Networks Using Space Mapping Techniques,” IEEE Journal on Multiscale and Multiphysics Computational Techniques, vol. 6, pp. 56-61, 2021.

[5] F. Jiang, L. Chen, et al., “Multi-Conductor Electromagnetic Coupling Model for Sensitive Wires Subject to Driven Wire in Complex Electronic Systems,” International Journal of Numerical Modelling: Electronic Networks, Devices and Fields, 2023, early access.

[6] P. Si, F. Jiang, Q. S. Cheng, G. Rivers, H. Xie, A. K. K. Kyaw, & B. Zhao (2020). “Triple non-covalent dynamic interactions enabled tough and rapid room temperature self-healing elastomer for next generation soft antenna,” Journal of Materials Chemistry A.

[7] T. Qiao, F. Jiang et al., “Pixel Antenna Optimization using the Adjoint Method and the Method of Moving Asymptotes,” IEEE Trans. Antennas Propag., doi: 10.1109/TAP.2023.3240563.

[8] D. L. Wu, W. H. Guo, W. J. Zhu, F. Jiang, L. H. Ye, “Broadband Hybrid Decoupling Method for a Dual-Polarized Antenna With High Isolation,” IEEE Antennas and Wireless Propagation Letters.

[9] Y. Hu, W. H. Chen, M. Q. Wu, L. H. Ye, F. Jiang, J.-F. Li, and D.-L. Wu, “Isolation Enhancement Between Two Low-Profile Patch Antennas for In-Band Full-Duplex Applications,” IEEE Antennas and Wireless Propagation Letters, Early access.

[10] D.-L. Wu, J. Pan, L. H. Ye, J.-F. Li, F. Jiang, X. Tian, R. Li, and Z. Hu*, “A Broadband Circularly Polarized Dipole Antenna with High 1-dB Gain Flatness,” IEEE Antennas and Wireless Propagation Letters, Early access.

[11] Z. Zhang, H. Chen, F. Jiang, Y. Yang, and Q. S. Cheng, “K-Means-Based Multigroup Differential Evolution Optimization Framework for Design of MIMO Antenna With Decoupling Elements,” IEEE Antennas and Wireless Propagation Letters, vol. 21, no. 10, pp. 1980-1984, Oct. 2022.

[12] M. Li, Y. Zhang, F. Jiang et al., “Improvement for MIMO Systems by Increasing Antenna Isolation and Shaping Radiation Pattern Using Hybrid Network,” IEEE Transactions on Industrial Electronics, vol. 69, no. 12, pp. 13891-13901, Dec. 2022.

[13] S. K. K. Dash, Q. S. Cheng, R. K. Barik, F. Jiang, N. C. Pradhan, and K. S. Subramanian, “A Compact SIW Cavity-Backed Self-Multiplexing Antenna for Hexa-Band Operation,” IEEE Trans. Antennas Propag., vol. 70, no. 3, pp. 2283-2288, March 2022.

[14] Z. Zhang, H. Chen, F. Jiang, Y. Yu, and Q. S. Cheng, “A Benchmark Test Suite for Antenna S-Parameter Optimization,” IEEE Trans. Antennas Propag., vol. 69, no. 10, pp. 6635-6650, Oct. 2021.

[15] Z. Zhang, H. Chen, Y. Yu, F. Jiang, and Q. S. Cheng, “Yield-Constrained Optimization Design Using Polynomial Chaos for Microwave Filters,” IEEE Access, vol. 9, pp. 22408-22416, 2021.

[16] Z. Zhang, Q. S. Cheng, H. Chen, and F. Jiang, “An Efficient Hybrid Sampling Method for Neural Network-Based Microwave Component Modeling and Optimization,” IEEE Microwave and Wireless Components Letters, vol. 30, no. 7, pp. 625-628, July 2020.

知识产权



[1] 江帆; 陈璐露; 叶亮华; 田欣欣; 李健凤; 吴多龙 ; 导线间电磁耦合的快速计算方法、装置、电子设 备及介质, 2024-06-21, 中国, CN202311381019.0

[2] 江帆; 汪盛炀; 陈璐露; 叶亮华; 李健凤; 吴多龙 ; 基于自适应更新的像素天线设计方法、系统、设备及介质, 2025-02-19, 中国, 受理,2025101809524

[3] 吴多龙; 户肖剑; 江帆; 叶亮华; 李健凤; 田欣欣 ; 基于深度学习优化的层叠式高隔离全双工天线及通信设备, 2023-10-31, 中国, CN202311001307.9

[4] 吴多龙; 郭文荷; 江帆; 叶亮华; 李健凤; 胡振欣 ; 全双工应用的宽带高隔离偶极子天线及通信设备, 2023-10-27, 中国, CN202310966969.3

科研项目



广东工业大学“青年百人计划”科研启动金,主持,在研

技术开发项目,太赫兹天线阵列的透镜仿真设计,主持,在研

广东工业大学种子基金项目,主持,在研

国家自然科学基金面上项目,参与,在研

教学活动

本科生课程:《信号与系统》《电磁兼容技术》《电工与电子技术》

研究生课程:《射频电路理论与设计》


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