导师风采

杨佳宁



个人信息:

职称:讲师/硕士生导师

电子邮箱:yangjianing@cqu.edu.cn

所在单位:微电子与通信工程学院

学历:博士研究生

办公地点:重庆市沙坪坝区大学城南路55号重庆大学虎溪校区微电子与通信工程学院信息技术科研楼A509


个人简介:

杨佳宁,男,博士(后),重庆大学微电子与通信工程学院院长助理,唐明春教授天线团队骨干成员。

2015年毕业于四川大学,2020年于中国科学院大学获博士学位,师从罗先刚院士,2020.07至今在重庆大学微电子与通信工程学院工作。主要面向微波天线科技前沿,面向国家电磁隐身、通信等重大需求开展高水平科学研究,聚焦高性能天线设计以及高性能隐身材料设计。目前在IEEE Transactions on Antennas and Propagation、ACS Photonics,Advanced Optical Materials,Small Methods等权威期刊发表SCI论文30余篇,Google学术引用1300余次。主持国家级、省部级以及头部研究所等项目10余项;申请国家技术发明专利8项;获得2022年光学工程学会优博论文提名奖1项。

研究方向:

●融合物理模型与数据驱动的反射阵/透镜天线智能设计

●智能化可重构隐身超表面设计

●下一代密集共口径天线阵列设计

●基于人工智能大模型的超表面结构逆向设计与性能突破研究

主要社会及学术兼职:

●IEEE AP/MTT Joint Societies Chongqing Chapter重庆分会秘书

●国际会议IMWS-AMP 2024分会主席

●国际会议IEEE MAPE 2022分会主席

●国际会议ICEICT 2020分会主席

●国际期刊《Photonics》客座编辑

近期主持的代表性项目:

●具有散射-透射双模式可重构特性的隐身超表面器件研究,自然科学基金青年项目

●基于可重构全空间超表面的多维度动态隐身技术研究,重庆市自然科学基金面上项目

●亚波长尺度散射/辐射复合调控关键技术研究,中国博士后科学基金面上项目

●超宽带消色差幅相调控透镜天线设计,毫米波全国重点实验室开放课题

●基于多维度超表面的超宽带消色散反射阵天线研究,重庆市博士后特别资助项目一等资助

●X/Ka无源天线模块技术,中电科26所

近三年代表性科研论文:

[1]J. Yang, Y. Li, J. Guo, Z. Wu and M. -C. Tang, “A Compact, Broadband, Radar-infrared Multispectral Stealth Antenna Based on Dual-functional Polarization Conversion Metasurface,” IEEE Transactions on Antennas and Propagation, doi: 10.1109/TAP.2025.3575299, 2025. (Early Access)

[2]J. Yang, H. Xin, and M.-C. Tang, “Broadband, Low-Profile, Planar Reflectarray Antenna Based on an Achromatic Metasurface,” IEEE Transactions on Antennas and Propagation, vol. 71, no. 6, pp. 5440-5445, 2023.

[3]J. Yang, Y. Zhang, M.-C. Tang , Z. Zhang, and M. Qu. “Compact wideband FSS-absorber-based low-RCS reflectarray antenna,” Chinese Journal of Aeronautics, vol. 36, no. 6, pp. 332-339, 2023.

[4]J. Yang, R. Ming, Y. Zhang and M. -C. Tang,“A Broadband, High-Efficiency, Low-Sidelobe Transmitarray Antenna Employing Hybrid Transmission Metasurface Polarizer”, IEEE Antennas and Wireless Propagation Letters, doi: 10.1109/LAWP.2025.3543589.(Early Access)

[5]J. Yang, Y. Li, D. Yi, M. Li, Y. Huang and M.-C. Tang, “Review of progress in microwave electromagnetic stealth metasurfaces”, Chinese Journal of Aeronautics, (Accepted), 2024.

[6]J. Yang, Y. Zhang, M.-C. Tang et al. “A reconfigurable asymmetric-transmission metasurface for dynamic manipulation of transmission, reflection, and polarization,” Journal of Applied Physics, vol. 133, no. 8, 2023.

[7]C. Huang, J. Yang, C. Ji, L. Yuan, and X. Luo, “Graphene‐Driven Metadevice for Active Microwave Camouflage with High‐Efficiency Transmission Window,” Small Methods, vol. 5, no. 2, pp. 2000918, 2021.

[8]H. Xin, J. Yang*(通信), M.-C. Tang, H. Zhang, Z. Zhang, and M. Qu, “Broadband electrically controlled reflective metasurface for reconfigurable circularly polarized wavefront manipulation,” Optics Express, vol. 31, no. 8, pp. 13518-13527, 2023.


学术会议:

[1]Jianing Yang, Rui Ming, Mei Li and Ming-Chun Tang, A Novel 1-bit Circularly Polarized Reconfigurable Reflectarray Antenna, IEEE MTT-S IWS 2025, Xian, China, May, 2025. (Invited Speaker)

[2]Jianing Yang, Rui Ming, Ming-Chun Tang,Broadband Reflectarray and Transmittarray Antennas Based on Multi-layer Metasurfaces. IMWS-AMP 2024, Nanjing, China, Dec. 2024. (Invited Speaker)

[3]Jianing Yang, Ultra-Broadband Reflectarray Antenna Using Multi-layer metasurface. IEEE MAPE 2022, Chengdu, China, Aug. 2022. (Invited Speaker)

[4]Jianing Yang, Ming-Chun Tang,Transmission-reflection-integrated metasurfaces for manipulating the electromagnetic waves. ICEICT2020, Shenzhen, China, Nov. 2020. (Invited Speaker)

[5]Yanting Zhang(学),Jianing Yang, Ming-Chun Tang, Compact Reflectarray Antenna with Broadband RCS Reduction,2022 IEEE IMWS-AMP, Guangzhou, China, Sept. 2022. (Invited Speaker)

[6]Rui Ming(学), Yanting Zhang(学), Jianing Yang, et. al., A switchable transmissive metasurface based on polarization conversion, 2024 IEEE iWRF&AT, Shenzhen, China, June 2024

[7]Yao Li(学), Hai Xin(学), Jianing Yang, et. al., Electronically Controlled 1-Bit Reconfigurable Broadband Circular-Polarized Reflective Metasurface, 2024 15th GSMM, Hongkong, China, May 2024

[8]Jianing Yang, Hai Xin, Ming-Chun Tang et. al., Ultra-Broadband Reflectarray Antenna Using Multi-Layer Metasurface, 2022 International Conference on Microwave and Millimeter Wave Technology (ICMMT), Harbin, China, 2022, pp. 1-3,


代表性国家发明专利:

●一种用于圆极化波前调控的宽频带电控可重构反射超表面单元及结构,专利号:ZL 2023 1 0229863.5,授权日:2024.04.19.

●一种基于PIN二极管的透射-反射可重构极化转换超表面,专利号:ZL 2022 1 1196124.2,授权日:2024.03.22.

●一种基于极化转换超表面的雷达-红外多频谱隐身天线,申请号:CN202411512243.3.

●一种兼具吸波可调和透波可切换的多功能隐身超表面,申请号:202510167711.6.

●一种采用混合谐振超表面单元的透射阵天线,申请号:202510104300.2

●一种电控波束扫描圆极化反射阵天线,申请号:2024118939427


研究生学术获奖:

●指导博士生段云露、硕士生辛海、李宇宣获2022年中国研电赛西南分赛区团队一等奖

●指导硕士生张艳婷、冯丽萍、明芮获2023年中国研电赛全国总决赛团队三等奖

●指导硕士生辛海、李宇宣和博士生段云露获2023年中国研电赛全国总决赛团队三等奖

●指导本科生胡蝶于2024.06获本科毕业设计学院优秀论文

毕业生去向:

长安,中电55所,成飞,航天火箭