个人简历:
[1] 2023-至今,厦门大学电子科学与技术学院,副教授(长聘)
[2] 2018-2019,美国杜克大学,联合培养博士生
[3] 2014-2019,华南理工大学工学博士,信息与通信工程专业
研究方向:
5G大规模毫米波MIMO天线、先进封装工艺毫米波天线/芯片天线、多频段共口径基站天线阵列、卫星圆极化相控阵天线、玻璃天线及终端产品、射频多器件协同融合设计
主讲课程:
[1] 电磁场与电磁波实验课(本科生课)
[2] 无线通信技术(本科生课)
[3] 现代电子技术(研究生课)
学术兼职:
[1] IEEE Senior Member
[2] SCI期刊IEEE Antennas and Wireless Propagation Letters特邀编辑
[3] SCI期刊Sensors特邀编辑
[4] SCI期刊Symmetry特邀编辑
[5] 担任IEEE APCAP,IEEE CAMA, IEEE MAPE, IEEE IWS,IEEE ICMMT, IEEE ICMMC, CSRSWTC,GSMM,PIERS,全国天线年会、微波与电路系统青年学术会议等国内外会议分会主席、特邀报告专家
[6] IEEE Antennas and Wireless Propagation Letters杰出审稿人
[7] IEEE Transactions on Antennas and Propagation期刊优秀审稿人
[8] IEEE TAP, TMTT,TCAS-I, TCAS-II, TCMPT, AWPL, MWTL等期刊审稿人
成果奖励:
[1] 指导研究生获得华为2026年硬件精英挑战赛华东赛区亚军及全国总决赛优胜奖
[2] 指导研究生获批2025年中国科协青年科技人才培育工程博士生专项计划项目(原青年人才托举工程博士生专项计划)
[3] 指导研究生荣获2025年福建省研究生优秀学位论文(2025届硕士毕业生辜为栋)
[4] 指导研究生获得2025 IEEE MTT-S IWS MVC最佳论文奖
[5] 指导研究生获得2025年研究生博士及硕士国家奖学金
[6] 指导研究生获得2025年刘晓数理电子科学奖(2023级博士生黄楷,奖学金3万元,2022级硕士生辜为栋,奖学金1.5万元)
[7] 指导研究生组队获得2024年第十九届中国研究生电子设计竞赛全国总决赛三等奖(队长:2023级硕士生金蓉婷)
[8] 指导研究生荣获2023年福建省研究生优秀学位论文(2023届硕士毕业生张跃)
[9] 指导研究生组队获得2023年第十八届中国研究生电子设计竞赛全国总决赛二等奖(队长:2023级硕士生王宇斌)
[10] 指导研究生获得国际学术会议2023 IEEE APCAP最佳学生论文提名奖(2022级硕士生辜为栋)
[11] 指导研究生组队获得2022年第十七届中国研究生电子设计竞赛全国总决赛一等奖(队长:2022级硕士生王清柳)
[12] 指导研究生获得国际学术会议2022 IEEE APCAP最佳学生论文奖(2020级硕士生黄楷)
[13] 指导研究生获得国际学术会议2022 IEEE IMWS-AMP博士论文资助奖(2023级博士生黄楷)
[14] 指导研究生获得2022华为天线创新杯三等奖(2021级硕士生何晓玲)
[15] 指导研究生获得2021年华为天线技术论坛Huawei Annovation Cup三等奖(2021级硕士生王继兴)
[16] 荣获中国研究生电子设计竞赛全国总决赛优秀指导教师奖
[17] 荣获华为6G先进无线技术探索专项赛杰出指导教师奖
[18] 连续入选2023年度、2024年度全球前2%顶尖科学家榜单(美国斯坦福大学发布)
[19] 入选厦门市高层次人才
[20] 入选福建省“海纳百川”高层次人才B类
部分主持科研项目:
[1] 福建省科技计划“揭榜挂帅”重大项目,在研,主持;
[2] 国家自然科学基金联合基金重点支持项目,在研,子课题,主持;
[3] 国家自然科学基金面上项目,在研,主持;
[4] 国家自然科学基金青年基金项目,结题,主持;
[5] 厦门大学校长基金自由探索项目,在研,主持;
[6] “***研究院”委托横向项目,在研,主持;
[7] 福建省科技计划项目对外合作项目,提前结题,主持;
[8] 厦门市自然科学基金项目,在研,主持;
指导研究生发表IEEE期刊二区及以上论文(#第一作者,*通讯作者):
[1] X. T. Liu# (2023级硕士生刘学铜), X. Y. Meng, L. Y. Xiao and Y. Zhang*(张垚), “Generative learning based decoupling structure design for shared-aperture antenna arrays,” IEEE Antennas Wireless Propag. Lett., early access article, doi: 10.1109/LAWP.2026.3683929.
[2] L. Cui#, K. Huang# (2023级博士生黄楷), Y. Zhong, Y. Zhang(张垚) and Q. Huo Liu*, “Filtering antenna design and optimization by the generative machine learning approach,” IEEE Trans. Antennas Propag., vol. 74, no. 4, pp. 3068-3081, Apr. 2026.
[3] Y. F. Xie# (2024级硕士生谢一帆) and Y. Zhang*(张垚), “Dual-polarized filtering dipole antenna design based on multipath coupling,” IEEE Antennas Wireless Propag. Lett., vol. 25, no. 2, pp. 686-690, Feb. 2026.
[4] K. Huang# (2023级博士生黄楷) and Y. Zhang*(张垚), “Analysis and design of broadband dual-polarized filtenna array for 5G millimeter wave application,” IEEE Antennas Wireless Propag. Lett., vol. 25, no. 1, pp. 194-198, Jan. 2026.
[5] Y. Zhang#(张垚), R. T. Jin (2023级硕士生金蓉婷), and M. W. Zhuang*, “Multi-beam switchable antenna system for range-extended unmanned aerial vehicle,” IEEE Antennas Wireless Propag. Lett., vol. 25, no. 1, pp. 144-148, Jan. 2026.
[6] R. T. Jin# (2023级硕士生金蓉婷) and Y. Zhang* (张垚), “Dual-polarized filtering dipole antenna using a novel crossover ring filter structure,” IEEE Antennas Wireless Propag. Lett., vol. 24, no. 9, pp. 2984-2988, Sept. 2025.
[7] K. Huang# (2023级博士生黄楷), Y. Zhang* (张垚), J. Y. Zhou and Q. H. Liu, “Dual-polarized dipole filtenna with grid-shaped radiator structure,” IEEE Antennas Wireless Propag. Lett., vol. 24, no. 7, pp. 2044-2048, Jul. 2025.
[8] L. Z. Cui, K. Huang (2023级博士生黄楷), Y. Zhong, Y. Zhang (张垚) and Q. H. Liu*, “An auxiliary classifier generative method for antenna design and optimization,” IEEE Trans. Antennas Propag., vol. 73, no. 2, pp. 733-747, Feb. 2025.
[9] W. D. Gu# (2022级硕士生辜为栋), and Y. Zhang* (张垚), “A type of dual/circularly-polarized filtering dipole antenna design based on coupled lines,” IEEE Antennas Wireless Propag. Lett., vol. 24, no. 2, pp. 489-493, Feb. 2025.
[10] K. Huang# (2023级博士生黄楷), Y. Zhang* (张垚), J. Y. Zhou and Q. H. Liu, “Dual-polarized wideband dipole filtenna using a CMRC radiator structure,” IEEE Antennas Wireless Propag. Lett., vol. 24, no. 1, pp. 162-166, Jan. 2025.
[11] X. J. Lin#, Y. Zhang* (张垚), Z. L. Qiu and Z. Huang, “A compact circularly polarized filtering dipole antenna with co-layered printed ring structures,” IEEE Antennas Wireless Propag. Lett, vol. 23, no. 10, pp. 3098-3102, Oct. 2024.
[12] N. An# (2022级硕士生安宁), and Y. Zhang* (张垚), “Dual-band dual-sense circularly-polarized antenna utilizing a radiating slot antenna as feeding structure,” IEEE Antennas Wireless Propag. Lett., vol. 23, no. 4, Apr. 2024.
[13] W. D. Gu# (2022级硕士生辜为栋), and Y. Zhang* (张垚), “A dual-band dual-polarized filtering antenna”, IEEE Antennas Wireless Propag. Lett., vol. 23, no. 2, pp. 533-537, Feb. 2024.
[14] X. L. He# (2021级硕士生何晓玲), and Y. Zhang* (张垚), “A polarization convert reflective surface based wideband antenna array decoupling structure”, IEEE Antennas Wireless Propag. Lett., vol. 23, no. 2, pp. 883-887, Feb. 2024.
[15] K. Huang# (2023级博士生黄楷), Y. Zhang* (张垚), and Q. H. Liu “Dual-polarized filtering antenna based on a second-order SIR filter,” IEEE Antennas Wireless Propag. Lett., vol. 23, no. 1, pp. 154-158, Jan. 2024.
[16] K. Huang# (2023级博士生黄楷), Y. Zhang* (张垚), L. F. Ye, and Q. H. Liu, “A millimeter-wave antenna with filtering radiation response based on absorptive ring feeding circuit” IEEE Antennas Wireless Propag. Lett., vol. 22, no. 10, pp. 2542-2546, Oct. 2023.
[17] X. J. Lin#, Y. Zhang* (张垚), L. F. Ye, and Q. H. Liu, “Dual-polarized duplex patch antenna based on a multiport ring feeding structure” IEEE Antennas Wireless Propag. Lett., vol. 22, no. 9, pp. 2315-2319, Sep. 2023.
[18] K. Huang# (2023级博士生黄楷), and Y. Zhang* (张垚), “Analysis and design of dual-polarized millimeter-wave filtering magneto-electric dipole antenna”, IEEE Trans. Antennas Propag., vol. 71, no. 8, pp. 6947-6952, Aug. 2023.
[19] J. X. Wang# (2021级硕士生王继兴), Y. Zhang* (张垚), L. F. Ye, and Q. H. Liu, “A wideband circularly polarized filtering antenna based on slot-patch structure” IEEE Antennas Wireless Propag. Lett., vol. 22, no. 8, pp. 1858-1862, Aug. 2023.
[20] Y. Zhang# (2020级硕士生张跃), and Y. Zhang* (张垚), “Dual-band dual-polarized antenna using a simple radiation restoration and decoupling structure” IEEE Antennas Wireless Propag. Lett., vol. 22, no. 4, pp. 709-713, Apr. 2023.
n 部分已授权中国/美国发明专利
[1] 张垚,辜为栋,黄楷,一种宽带双极化磁电偶极子滤波天线,专利号:ZL202310568784.7,授权日:2026.08.04
[2] 张垚,辜为栋,黄楷,于大全,一种双频双极化磁电偶极子滤波天线,专利号:ZL202310875471.6,授权日:2026.05.26
[3] 张垚,王宇斌,黄楷,于大全,柳清伙,一种应用于卫星通信的异频异圆极化共口径天线,专利号:ZL 202510262972.6,授权日:2026.06.26
[4] 张垚,李传奇,施明杰,杨华,陈云,章玉涛,基于解耦表面及隔离板的双极化和双频基站天线及阵列,专利号:ZL202510834773.8,授权日:2026.04.10 (授权,企业合作联合申请)
[5] 张垚,黄楷,于大全,柳清伙,一种基于解耦表面的双极化和圆极化双频共轴天线,专利号:ZL202310892965.5,授权日:2025.12.26
[6] 张垚,施明杰,黄楷,于大全,柳清伙,一种单层结构的同频、异频解耦表面及双极化双频段基站天线,专利号:ZL202510262876.1,授权日:2025.11.18
[7] 张垚,黄楷,一种三频段双极化共轴分布的室分天线,专利号:ZL202510102569.7,授权日:2025.10.14
[8] 曾竞涛,章秀银,王继兴,杨华,陈云,张垚,一种应用于低轨卫星通信的圆极化天线,专利号:ZL202411061548.7,授权日:2024.10.15,(授权,企业合作联合申请)
[9] 张垚,黄楷,一种5G毫米波双极化磁电偶极子滤波天线,专利号:ZL202210238834.0, 授权日:2023.05.12
[10] 张垚,黄楷,一种毫米波宽频段高增益双极化磁电偶极子滤波天线,专利号:ZL202111665228.9, 授权日:2023.02.10
[11] 张垚,王继兴,一种宽带高增益圆极化滤波天线,专利号:ZL202210252487.7,授权日:2022.12.06
[12] 张淼,李泽威,吴亚祥,梁培杰,广川二郎,张垚,柳清伙,一种基于对称馈电的E面波导十字型功分器,专利号:ZL202110485937.2,授权日:2023.06.13 (授权)
[13] X.-Y. Zhang, Y. Zhang (张垚), Y.M Pan, and W. Duan, “Low-profile dual-band filtering patch antenna”, US 10347990 B2, Jul, 2019 (授权美国发明专利)
[14] X.-Y. Zhang, Y. Zhang (张垚), and Y.M Pan, “Dual band filtering antenna array using filtering antenna elements for mutual coupling suppression”, US 10587047 B2, Mar, 2020 (授权美国发明专利)
[15] X.-Y. Zhang, S. J. Yang, Z. J. Zhang, Y.M Pan, Y. F. Cao, and Y. Zhang (张垚), “Low profile dual-polarization filtering magneto-electric dipole antenna”, US 11296418, Apr, 2022 (授权美国发明专利)