贺冲副教授

址:上海市东川路800号上海交通大学电信群楼1号楼523

话:86-21-34208587

箱:hechong@sjtu.edu.cn

研究中心:现代天线研究中心

个人主页:https://ant.sjtu.edu.cn/homepage/hechong/

个人简介
        分别于2007年和2009年在华中科技大学电子与信息工程系获工学学士与工学硕士学位,2015年在上海交通大学电子工程系获工学博士学位。2016~2018年在上海交通大学通信与信息工程博士后流动站工作,2019年加入上海交通大学电子工程系,先后任职助理教授、副教授。在Research, IEEE Wireless Commun., IEEE Trans. Antennas Propag., Adv. Opt. Mater., Laser Photonics Rev.等国内外权威期刊上发表论文60余篇,其中一作/通信29篇。申请国家技术发明专利19项,已授权11项(授权许可1项)。担任《IEEE JSAC》专刊客座编辑、《电波科学学报》专刊编委、《移动通信》专题编委,2021 IEEE AP-S、2021全国天线年会、2022 IEEE MAPE等多个学术会议的分会场主席,受邀在2022 IEEE IWS/2022 IEEE MAPE等国际学术会议上做邀请报告。先后主持军科委173技术领域重点基金、国家自然科学基金青年/面上项目、科技部重点研发计划(子课题)、上海市科委基础研究领域项目(课题)、上海航天自主创新项目等项目8项,作为核心成员参与军科委基础加强重点项目、科技部重大专项子课题等科研项目6项。研究成果入选第三届军民融合高技术成果展、上海航天军科委成果展等。指导学生获得中国电子教育学会优博(2023)、上海交大第六届 “学术之星”(2021)等。研究方向包括时间调制天线阵列/超表面、无线电测向定位、通信/导航抗干扰、后向散射/直接调制无线通信等。先后提出基于谐波特征分析的单通道无线电测向、类单边带时间调制模拟相控阵天线、单通道数字相控阵天线等具有工程实现价值的新方法,开发出单通道谐波特征分析测向、单通道空间谱估计测向、新体制低复杂度相控阵天线、后向散射/直接调制无线通信等多套原理样机,研制电子侦察与对抗载荷应用于某型新技术试验卫星,服务于国防与国家安全。

研究领域
相控阵/超表面天线、阵列信号处理、电子侦察与对抗
研究方向
1.  阵列信号处理:主要包括阵列方向图综合、空间谱估计、空时信号处理等。
2.  相控阵天线:主要包括大型相控阵快速并行校准、新体制相控阵天线等。
3.  时间调制阵列/四维天线阵列:主要包括时间调制阵列理论,及其在单通道无线电测向、自适应波束形成、空分多址移动通信系统、超高速移动通信系统中的应用。
获奖情况

2023年中国电子教育学会优秀博士论文 指导教师

2021年上海交通大学第六届“学术之星” 指导教师

授课

电院本科生课程:电子工程数理方法(EST2303)

科研项目

主持科研项目:

[1].    “基于时间调制的有源相控阵天线并行校准研究”,国家自然科学基金面上项目,项目编号:62271317,2023.1~2026.12,在研

[2].    “脑机接口中远距离无线功能研究”,科技部重点研发项目(子课题),2022~2026,在研

[3].    “透射可重构超表面大规模天线系统研究”,上海市“科技创新行动计划”基础研究项目,2022~2025.

[4].    “时间调制XXXX阵列研究”,军委科技委技术领域重点基金项目,项目编号:JCJQ-JJ-2021-0627,2021.10~2024.10,在研

[5].    “基于谐波特征分析的时间调制阵列测向研究”,国家自然科学基金青年基金,项目编号:61901263,2020.1~2022.12,在研。

[6].    “基于四维阵列的XXXX天线”,2018年上海航天自主创新计划,项目编号:ZY2018-23,2018.11~2021.4,在研。

[7].    “基于同位异构短波传输的极化分集关键技术研究”,中船重工第722研究所2018年自主创新基金,2018.12~2020.5,在研。

[8].    “无人机发现与测向定位系统研究与设计”,北京市重点基金项目合作课题,2017.6~2017.12,已结题。

学术兼职

IEEEJournal on Selected Areas in Communications》专刊 编委

电波科学学报》专刊 编委

《移动通信》专题 编委

著作及专利

[1].贺冲、曹岸杰等,基于周期性幅度控制的相控阵天线系统及波束控制方法,申请号:201310317879.8,授权公开号:103401072B.
[2].贺冲、曹岸杰等,单通道无线电测向系统,申请号:201310317954.0,授权公开号:103439686B
[3].贺冲、陈维明等,一种能补偿多普勒效应的自适应阵列天线系统,申请号:201210327212.1,公开号:102868435A
[4].曹岸杰、贺冲等,一种自适应抗多普勒频偏的时间调制阵列天线系统,申请号:201310085484.X,授权公开号:103220032B
[5].贺冲、陈靖峰等,一种单射频通道二维无线电测向系统,申请号:CN201710939221.9
[6].贺冲、陈靖峰等,一种基于两单元时间调制阵列的雷达系统,申请号:CN201710939225.7
[7].陈靖峰、贺冲等,一种基于时间调制的宽带线性调频信号测向系统及方法,申请号:CN201810019435.9

重要论文

[1].  [2024 AWPL] Q. Zhan, S. Li, B. Yan, A. Cao, X. Bai and C. He*, Spatial Spectrum Direction Finding by Programmable Metasurface with Time Modulation, IEEE Antennas Wireless Propag. Lett., 2024, 24(2): 458-462.

[2].  [2023 TMTT] R. Chen, C. He*, G. Ni, J. Chen, J. Geng and R. Jin, "Wideband Single-Sideband Time Modulator Based on Practical 2-bit Switched-Type Phase Shifter," IEEE Trans. Microw. Theory Techn., (Early Access).

[3].  [2024 AWPL] R. Chen, C. He*, G. Ni, J. Chen, J. Geng and R. Jin, "Parallel Calibration Method for Phased Array Based on Multiple-Period Time Modulation," IEEE Antennas Wireless Propag. Lett., 2024, 24(2): 603-607.

[4].  [2023 MWCL] R. Chen, C. He*, G. Ni and R. Jin, "Measurement of Complex-Ratio Between Two RF Signals With Spectrum Analysis," IEEE Microw. Wireless Compon. Lett., 2023, 33(6): 767-770.

[5].  [2023 TAP] G. Ni, C. He* and R. Jin, Harmonic-Based MIMO Transceiver With Time-Modulated Arrays, IEEE Transactions on Antennas and Propagation, 2023, 71(9): 7553-7565.

[6].  [2023 TAP] G. Ni, C. He*, Y. Gao, J. Chen, R. Jin. High-Efficiency Modulation and Harmonic Beam scanning in Time Modulated Array. IEEE Transactions on Antennas and Propagation, 2023, 71(1): 368-380.

[7].  [2022 AWPL] G. Ni, C. He* and R. Jin. An Improved Modulation Module in Time-Modulated Array. IEEE Antennas and Wireless Propagation Letters, 2022, 21(3): 561-565.

[8].  [2022 WCL] G. Ni, C. He* and R. Jin, “Single-Channel Anti-Jamming Receiver with Harmonic-based Space-Time Adaptive Processing”, IEEE Wireless Communications Lett., Early Access, 2022. DOI: 10.1109/LWC.2022.3143505

[9]. [2021 AWPL] X. Jiang, G. Ni, A. Cao, C. Shao and C. He*, “Single Channel Spatial Spectrum Estimation Direction Finding by Time Modulated Linear Array”, IEEE Antennas Wirel. Propag. Lett., Vol. 20(12), pp. 2491-2495, Dec. 2021.

[10]. [2021 TAP] G. Ni, C. He*, J. Chen, L. Bai and R. Jin, “Direction Finding and Performance Analysis With 1 bit Time Modulated Array”, IEEE Transactions on Antennas and Propagation, Vol. 69(10), pp. 6881-6893, May 2021.

[11]. [2020 AWPL] G. Ni, C. He*, Y. Liu, J. Chen and R. Jin, “Direction-Finding Based on Time Modulated Array without Sampling Synchronization”, IEEE Antennas and Propagation Letters, Vol. 19(12), pp. 2149-2153, 2020.

[12]. [2020 AOM] X. Bai*, F. Kong, Y. Sun, G. Wang, J. Qian, X. Li*, A. Cao, C. He*, X. Liang, R. Jin and W. Zhu*, “High-Efficiency Transmissive Programmable Metasurface for Multimode OAM Generation”, Advanced Optical Materials, accepted, 2020.

[13]. [2020 TAP] C. He*, B. Lin, Q. Chen, A. Cao, J. Chen and R. Jin. “Periodic Phase Modulation Method for Fast Diagnosis of Phased Array”, IEEE Transactions on Antennas and Propagation, Vol. 69(2), pp. 1184-1187, Sep. 2020.

[14].  [2020 AWPL] G. Ni, Y. Song, J. Chen, C. He* and R. Jin. “Single Channel LCMV-Based Adaptive Beamforming with Time Modulated Array”, IEEE Antennas and Propagation Letters, Vol. 19(11), pp. 1881-1885, 2020.

[15]. [2020 TAP] G. Ni, C. He*, J. Chen, Y. Liu and R. Jin. Low Sideband Radiation Beam Scanning at Carrier Frequency for Time-modulated Array by Non-uniform Period Modulation. IEEE Transactions on Antennas and Propagation, Vol. 68(5), pp. 3695-3704, May 2020.

[16]. [2020 TAP] J. Chen, W. Wang, C. He*, et al. Direction Finding Based on Time-Modulated Array With Multiharmonic Analysis. IEEE Transactions on Antennas and Propagation, Vol. 68(7), pp. 5753-5758, Feb. 2020.

[17]. [2020 TAP] J. Chen, C. He*, X. Liang, L. Bai, X. Bai, W. Zhu and R. Jin., “Direction Finding of Linear Frequency Modulation Signal in Time Modulated Array with Pulse Compression”, IEEE Transactions on Antennas and Propagation, vol. 68(1), pp. 509-520, 2020

[18]. [2020 AWPL] Y. Liu, C. He*, X. Liang, W. Zhu, J. Geng and R. Jin. “Multiuser Communication by Electromagnetic Vortex Based on Time-Modulated Array”, IEEE Antennas and Propagation Letters, Vol 19(2), pp. 282-286, 2020.

[19]. [2019 TWC] C. He*, Q. Chen, A. Cao, J. Chen and R. Jin., “Application of the Time Modulated Array in Satellite Communications”. IEEE Wireless Communications, 2019, 26(2):24-30.

[20]. [2018 TAP] C. He*, A. Cao, J. Chen, X. Liang, W. Zhu, J. Geng and R. Jin, "Direction Finding by Time Modulated Linear Array", IEEE Transactions on Antennas and Propagation, vol. 66, pp. 3642-3652, 2018

[21]. [2018 GRSL] C. He*, G. Yi, J. Chen, W. Zhu, X. Liang, J. Geng and R. Jin., “A Novel Radar Based on Two-element Time Modulated Array. IEEE Geoscience and Remote Sensing Letters, vol. 16 (4), pp. 524-528, 2018.

[22]. [2018 AWPL] C. He*, J. Chen, X. Liang, J. Geng, W. Zhu and R. Jin. “High Accuracy DOA Estimation Based on Time Modulated Array with Long and Short Baselines”. IEEE Antennas and Wireless Propagation Letters, vol. 17(8), pp. 1391-1395, 2018.

[23]. [2015 AWPL] C. He, X. Liang, Z. Li, J. Geng, and R. Jin, "Direction Finding by Time-Modulated Array with Harmonic Characteristic Analysis", IEEE Antennas and Wireless Propagation Letters, vol. 14, pp. 642-645, 2015.

[24]. [2015 AWPL] C. He, H. Yu, X. Liang, J. Geng, and R. Jin, "Sideband Radiation Level Suppression in Time-Modulated Array by Nonuniform Period Modulation", IEEE Antennas and Wireless Propagation Letters, vol. 14, pp. 606-609, 2015.

[25]. [2015 AWPL] C. He, X. Liang, B. Zhou, J. Geng, and R. Jin, "Space-Division Multiple Access Based on Time-Modulated Array", IEEE Antennas and Wireless Propagation Letters, vol. 14, pp. 610-613, 2015.

[26]. [2014 TAP] C. He, X. Liang, J. Geng, and R. Jin, "Parallel Calibration Method for Phased Array With Harmonic Characteristic Analysis", IEEE Transactions on Antennas and Propagation, vol. 62, pp. 5029-5036, 2014.