赵晨   Associate professor

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赵晨,南京信息工程大学副教授,博士生导师,IEEE Senior Member, 长期从事智能天线、智能通信协同感知、毫米波慢波电路的理论和实验研究工作,入选江苏省双创博士、江苏省六大人才高峰、江苏省333高层次人才工程。目前已在微波及电子器件领域知名期刊会议发表论文 60 余篇,发表英文专著1部,授权美国发明专利1项, 国家发明专利20余项,担任 IEEE Trans. on Electron Device、IEEE Communication letters, IEEE Trans. on Vehi...More

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赵晨,南京信息工程大学副教授,博士生导师,IEEE Senior Member, 长期从事智能天线、智能通信协同感知、毫米波慢波电路的理论和实验研究工作,入选江苏省双创博士、江苏省六大人才高峰、江苏省333高层次人才工程。目前已在微波及电子器件领域知名期刊会议发表论文 60 余篇,发表英文专著1部,授权美国发明专利1项, 国家发明专利20余项,担任 IEEE Trans. on Electron Device、IEEE Communication letters, IEEE Trans. on Vehicle Technology 等国际期刊审稿人,多次参与该领域国际会议的组织和执行工作,多次获国际真空电子会议(IVEC),国际天线年会(APS)和欧洲微波会议(EUMC)邀请作特邀演讲。曾作为主要技术骨干参与新加坡国防部项目,新加坡经济发展局项目等,主持国家级、省部级等科研项目 7 项。


教育背景: 

2011.08—2016.04,新加坡南洋理工大学,通信,博士

2007.09—2011.07,电子科技大学,电磁场与无线技术,学士


工作经历:   

2017.12—至今,南京信息工程大学,电子与信息工程学院,校聘教授

2016.04—2017.12,新加坡国立大学淡马锡实验室,研究员(Scientist)

2015.08—2016.04,新加坡国立大学淡马锡实验室,副研究员(Associate Scientist)


研究方向: 天线理论及应用、智能系统感通控一体技术、理论+AI+电磁器件设计、毫米波慢波微波电路


如有对科研感兴趣,且自我驱动力较强的同学,欢迎联系: 002912@nuist.edu.cn。


开设课程:

《电磁场与电磁波》、《数字电子技术》、《Matlab与数值仿真技术》、《电子工艺实习》


学术兼职:   

1. IEEE senior member。

2. 指挥与控制学会电磁频谱委员会委员

3. 《IEEE Trans. on Electron Device》、《IEEE Trans. on Antenna and Propagation》、《IEEE Trans. on Microwave Theory and Techniques》、《IEEE Trans. on Vehicle Technology》、《IEEE Trans. on Plasma Science》、《IEEE Wireless Communications letters》、《IEEE ACCESS》、《International Journal of Numerical Modelling: Electronic Networks, Devices and Fields》、《Electronics Letters》等SCI国际期刊审稿人。

 

荣誉获奖:  

1.“江苏省双创博士”,江苏省委组织部,2018年

2.  ”六大人才高峰“,江苏省委组织部,2019年

3.“双创团队”核心成员,2020

4. 江苏省333高层次人才,2024年

5. 南京信息工程大学龙山学者,2024年


科研项目:

1.面向无人机通信的紧凑型高功率毫米波返波管关键技术研究,重点实验室开放课题,2024.8-2026.7,主持。

2. 复杂XX感知技术研究,国家级军工纵向项目,2023.7-2025.6,主持。

3. 江苏省自然科学基金面上项目,2022.9-2024.8,主持。

4. 横向项目,2022.9-2022.12,主持。

5. 国家自然科学基金项目,2019.01-2022.12,主持。

6.江苏省自然科学基金,2018.08-2021.08,主持。

7. 东南大学毫米波重点实验室开放课题,2020.1-2022.12,主持

8.留学归国人员择优资助项目,2020.01-2022.12,主持。

9. 重庆市移动通信重点实验室公开项目,2019.01-2020.12,主持。

10. 南京信息工程大学人才科研启动基金,2018.1-2020.12,主持。


论文成果:

期刊

  • C. Zhao, H, Xu, “A Modified Double Staggered Grating Waveguide Slow Wave Structure for Sub-THz Traveling Wave Tubes”, IEEE Transactions on Electron Devices, 2023, 70(6): 1- 7.

  • C. Zhao, S. Zhang, F. Wang, W. Geyi, “A Compact Metasurface Antenna Array With Diverse Polarizations”, IEEE Antenna and Propagation Letters, vol. 22, no. 3, 2023.

  • C. Zhao, W. Li, “A Broadband Circularly Polarized Metasurface Antenna for Wearable Applications”, International Journal of RF and Microwave Computer-aided Engineering, vol. 32, no. 11, 2022.

  • C. Zhao, H. Xu, X. Zhu, “A low-profile dual-band multimode patch antenna for wireless local area network and cellular vehicle-to-everything communications”, International Journal of RF and Microwave Computer-aided Engineering, vol. 31, no. 12, 2021.

  • C. Zhao, Shaomeng Wang, Sheel Aditya, “A Novel Coplanar Slow-wave Structure for Millimeter Wave BWO Applications”, IEEE transactions on Electron Devices, vol. 84, no. 4, pp. 1924-1929, Apr. 2021.

  • C. Zhao, G. Wen, "Design of a Dual Band Dual Mode Antenna for on/off Body Communications", Microwave and Optical Technology Letters, vol. 62, no. 1, pp. 514-520, Jan 2020.

  • C. Zhao, C. Wang, “Power Dependent Frequency Selective Surface: Concept, Design and Experiment”, IEEE Trans. on Antenna and Propagation,vol. 67, no. 5, pp. 3215 – 3220, May, 2019.

  • C. Zhao, C. Wang, “Characteristic Mode Design of Wide Band Circularly Polarized Patch Antenna Consisting of H-Shaped Unit Cells”, IEEE access, vol. 6, pp. 25292 - 25299, Apr. 2018. 

  • C. Chua, C. Zhao, S. Aditya, “Design and fabrication of a planar helix slow-wave structure for C/X-band TWT”, IEEE trans. on Components, Packaging and Manufacturing Technology, pp. 1663-1669, May, 2017. 

  • C. Zhao, S. Aditya, S. Wang, J. Miao, X. Xia, “A Wideband Microfabricated Ka-Band Planar Helix Slow-Wave Structure”, IEEE Trans. on Electron Devices, vol. 62, no. 99, pp. 2900-2906, May. 2016.

  • C. Zhao, S. Aditya, and C. Chua, “A microfabricated planar helix slow wave structure to avoid dielectric charging in TWTs,” IEEE Trans. on Electron Devices, vol. 62, no. 4, pp. 1342 - 1348, Apr. 2015.

  • C. Zhao, S. Aditya, and C. Chua, “Connected Pair of Planar Helices with Straight- Edge Connections for Application in TWTs,” IEEE Trans. on Electron Devices, vol. 61, no. 6, pp. 1692 - 1698, Jun. 2014.

  • C. Zhao, S. Aditya, and C. Chua, “Analysis of Coupled Planar Helices with Straight-Edge Connections for Application in Millimeter-Wave TWTs,” IEEE Trans. on Electron Devices, vol. 60, no. 3, pp. 1244–1250, Mar. 2013.

  • Krithi Swaminathan, C. Zhao, C. Chua, and S. Aditya, “Vane-Loaded Planar Helix Slow-Wave Structure for Application in Broadband Travelling-Wave Tubes,” IEEE Trans. on Electron Devices, vol. 62, no. 3, pp. 1017 - 1023, Feb. 2015. 

  • Y. Zhou, W. Ding, W. Gu, C. Zhao, X. Yu,  F. Luan, “Power transfer mechanism  of  metallic  grating  coupled  whispering  gallery  microsphere  resonator,” Optics Letters, Vol. 40, Issue 9, pp. 1908-1911, 2015.

会议

  1. C. Zhao, G. Wen, "A low loss slow wave structure based on HCG SSP for traveling wave tube applications", 2018 APMC, Kyoto, Japan, October, 2018.

  2. C. Zhao, C. Wang, "A power dependent frequency selective surface", 2017 IEEE International Symposium on Antennas and Propagation & USNC/URSI National Radio Science Meeting, San Diego, CA, USA, July, 2017.

  3. C. Zhao, S. Aditya, “Observation of oscillations in a TWT with poor-quality electron beam”, IEEE International Vacuum Electronics Conference (IVEC), Monterey, California, USA, 19-21 April, 2016.

  4. C. Zhao, S. Aditya, S. Wang, “Study of a broad band planar slow wave structure for millimeter wave TWT applications”, IEEE International Vacuum Electronics Conference (IVEC), 22-24 April, 2015, Beijing.

  5. C. Zhao, J. Nilopal, S. Aditya, and C. Chua, “Planar Contra-wound Helix for Application in TWTs with Reduced Backward-wave Oscillation,” 44th European Microwave Conference (EuMC), Fiera di Roma, Rome, Italy, 05-10 October, 2014.

  6. C. Zhao, S. Aditya, and C. Chua, “Symmetric Planar Helix Slow-Wave Structure with Straight-Edge Connections for Application in TWTs,” IEEE International Vacuum Electronics Conference (IVEC), Monterey, California, USA, 22-24 April, 2014.

  7. C. Zhao, S. Aditya, C. Chua, and C. Jin, “Design of an Unconnected Pair of Planar Helices with Straight-Edge Connections for Application in TWTs,” IEEE International Vacuum Electronics Conference (IVEC), Paris, France, 21-23 May, 2013.

  8. C. Zhao, S. Aditya, and C. Chua, “Unconnected Pair of Planar Helices with straight-edge connections for application in TWTs,” 9th International Conference on Information, Communications and Signal Processing (ICICS), Tainan, Taiwan, 10-13 Dec, 2013.

  9. M.M.A. Kumar, C. Zhao, S. Wang, S. Aditya, “Backward wave oscillator using a planar helix slow-wave structure with straight-edge connections”, IVEC, April, 2016, Monterey, California, USA.

  10. S. Wang, S. Aditya, C. Zhao, “Spatial Power Combining of the Ka-band Microfabrication Planar Helix with Straight Connections Traveling Wave Tube”, IVEC, April, 2016, Monterey, California, USA.

  11. S. Wang, S. Aditya, C. Zhao, “Thermal characteristics of the planar helix slow wave structure with straight edge connections”, IVEC, 22-24 April, 2015, Beijing.

  12. S. Wang, S. Aditya, C. Zhao, “Design of a sheet beam electron gun for Ka-band micro-fabrication traveling wave tube”, IVEC, 22-24 April, 2015, Beijing.

  13. A. Kommalapati, C. Zhao, S. Aditya, “A printed planar helix antenna,” 8th European Conference on Antennas and Propagation, 12-17 Lisbon, Portugal, 6-11 April, 2015.

  14. F. Zhao, H. Tang, C. Zhao, X. Gao, P. Zhuo, and F. Zhang, “Design of novel dual band-notched disk monopole antennas,” International Workshop on Microwave and Millimeter Wave Circuits and System Technology, Chengdu, China, pp. 1–4, Apr. 2012.

  15. W. Luyu, C. Zhao, C. Li, and X. Lin, “Dual-band bandpass filter using stub loaded resonators with multiple transmission zeros,” 9th International Symposium on Antennas, Propagation and EM Theory (ISAPE), Guangzhou, China, pp. 1208–1211, Dec. 2010.

专利

  1. S. Aditya, C. Zhao, “Electron device and method for manufacturing an electron device”, filed in Singapore 10201406372Q, US10062538B2.

  2. 国家发明专利,专利号:ZL201810763110.1

  3. 实用新型专利,专利号:ZL201920300707.2