个人简介
电子信息工程学院常务副院长
雷达成像与微波光子技术教育部重点实验室常务副主任
学术荣誉:
2014 国家优秀青年科学基金获得者
【科学研究】
面向6G的智能全息无线电
学长说 | 潘时龙:面向6G的微波光子学
光矢量分析:测量光器件的“火眼金睛”
南航大“黑科技”为自动驾驶安上“智能眼”
高分辨率微波光子成像雷达芯片
南京航空航天大学潘时龙课题组:基于微波光子技术的超高精度实时雷达探测与成像
我首台超高精度光矢量分析仪问世
潘时龙,教授,博士生导师,美国光学学会会士(OSA Fellow),国际光学学会会士(SPIE Fellow),国家级人才工程入选者。南京航空航天大学电子信息工程学院常务副院长,雷达成像与微波光子技术教育部重点实验室常务副主任。分别于2004年7月和2008年7月在清华大学电子工程系获得学士与博士学位,2008到2010在加拿大渥太华大学从事博士后研究,2010年10月加入南京航空航天大学。
主要研究基于微波光子技术的新体制雷达、无线通信、测量系统和集成微波光子芯片等。在Nature Communications等期刊发表SCI 论文200余篇,其中IEEE期刊特邀论文12篇。成果获日内瓦国际发明展特别金奖、中国专利优秀奖、江苏省科学技术奖青年科技杰出贡献奖、江苏省科学技术奖一等奖、中国国际工业博览会大会银奖、中国光学工程学会创新科技奖一等奖、教育部自然科学奖二等奖等。
潘时龙教授目前担任IEEE MTT-S微波光子技术学会副主席、IEEE MTT-S出版委员会委员、Chinese Optics Letters副主编、微波光子学领域旗舰会议IEEE MWP2023技术委员会主席、Electronics Letters副编辑、IEEE/OSA Journal of Lightwave Technology副编辑、中国电子学会理事、中国光学工程学会理事等职,曾担任微波光子学领域旗舰会议IEEE MWP2021大会共同主席、IEEE MWP2017技术委员会共同主席、IEEE ICOCN 2015技术委员会主席等。曾获得中国青年科技奖、IEEE MTT-S杰出青年工程师奖、IEEE光子学会杰出讲席奖、教育部霍英东青年教师奖、江苏省五四青年奖章、江苏最美科技工作者等荣誉。
教育经历
2004.9 - 2008.7 清华大学 电子科学与技术 博士研究生毕业 工学博士学位
2000.9 - 2004.7 清华大学 电子科学与技术 大学本科毕业 工学学士学位
工作经历
2010.10 - 2019.7 南京航空航天大学 电子信息工程学院 教授
2008.8 - 2010.10 加拿大渥太华大学 电子工程与计算机科学学院 博士后 已出站
代表性特邀报告
[1] S. L. Pan, “What can photonics bring to radars,” in 2019 International Topical Meeting on Microwave Photonics (MWP 2019), Ottawa, Canada, Oct. 7-10, 2018. [60-min Invited Tutorial]
[2] S. L. Pan, Z. Z. Tang, and B. Q. Zong, "What is photonics-defined holographic radio?" in 2020 IEEE International Conference on Communications (IEEE ICC2020), Dublin, Ireland, Jun. 7-11, 2020.
[3] S. L. Pan and D. Zhu, “Broadband Cognitive Radio Enabled by Photonics,” in the 45th European Conference and Exhibition on Optical Communications (ECOC 2019), Dublin, Ireland, Sep. 18-26, 2019. [Invited]
[4] S. L. Pan, "Photonics-based radar enabling ultra-high resolution detection of space debris," in 2018 International Topical Meeting on Microwave Photonics (MWP 2018), Toulouse, France, Sept. 22-25, 2018. [Invited]
[5] S. L. Pan, "Ultra-high resolution real-time radar imaging based on microwave photonics," in the 23rd Opto-Electronics and Communications Conference, Jeju, Korea, July 2-6, 2018. [Invited]
[6] S. L. Pan, "Ultrahigh-resolution optical vector analysis for characterization of photonic integrated circuits," in SPIE Photonics West 2018, San Francisco, California, United States, Jan. 27-Feb. 1, 2018. [Invited]
[7] S. L. Pan, "High performance microwave systems based on long optical fiber," in the 7th International Multidisciplinary Conference on Optofluidics 2017, 25th-28th July 2017, Singapore. [Invited]
[8] S. L. Pan and M. Xue, "Optical Vector Analysis with Ultra-high Resolution," in the Optical Fiber Communication Conference and Exposition (OFC 2016), Mar. 20-24, 2016, paper W4K.1. [Invited]
[9] S. L. Pan, “Microwave photonic signal processing based on polarization modulation,” in the 2014 IEEE Photonics Conference (IPC 2014), San Diego, USA, Oct. 12-16, 2014. [Invited]
[10] S. L. Pan, "UWB over WDM-PON," the 37th European Conference and Exhibition on Optical Communications (ECOC 2011), Geneva, Switzerland, Sep. 18-22, 2011, WS17. [Invited]
科研获奖及荣誉
21) 2022年,评为GF科技工业十大创新人物
20) 2022年,获江苏省科学技术奖—青年科技杰出贡献奖(全省研究机构共5人)
19)2021年,获得强国青年科学家(全国共10人入选)
18) 2021年,获得IEEE MTT-S Outstanding Young Engineering Award(国内首次获奖)
17) 2021年,获江苏省最美科技工作者称号(全省10人)
16) 2021年,获江苏省高校优秀共产党员
15) 2020年,获得中国青年科技奖
14) 2020年,成果“超高分辨率光矢量分析仪”获得江苏省科学技术一等奖
13) 2020年,入选GF领域重大人才工程
12) 2020年,入选美国光学学会会士(OSA Fellow)
11) 2019年,入选国际光学工程学会会士(SPIE Fellow)
10) 2018年,入选英国工程技术学会会士(IET/IEE Fellow)
9) 2016年,入选民航科技创新领军人才
8) 2019年,入选IEEE Photonics Society Distinguished Lecturer(国内第二次入选)
7) 2017年,入选“万人计划”科技创新领军人才
6) 2016年,入选科技部创新推进计划中青年科技创新领军人才
5) 2017年,成果“超高分辨率光矢量分析仪”获得日内瓦国际发明展特别金奖(最高奖项)
4) 2016年,成果“宽带微波信号产生与传输的光子技术”获得中国光学工程学会科技创新奖一等奖
3)2017年,成果“光生微波中的非均匀损耗机理与精细模式选择方法”获得教育部自然科学奖二等奖
2) 2017年,成果“超高分辨率光矢量分析仪”获得第十九届中国国际工业博览会(产品类唯一来自高校)
1) 2018年,成果“超高分辨率实时成像微波光子雷达”获得第二十届中国国际工业博览会高校展区优秀展品特等奖
科研项目
[1] 微波光子方法简化大规模M**MO系统的**前端
[2] 高频微波光子学接收系统模型
[3] 相位编码和脉冲压缩**雷达技术研究
[4] 面向微波光子信号产生的In**与SOI异质集成技术研究
[5] 微波光子一体化**前端技术
[6] 2018江苏省333项目资助
[7] 电子信息领域前沿科技合作与特色学科发展推进计划
[8] 基于微环谐振器和马赫曾德尔干涉仪的可调微波光子延时器件研究
[9] 超宽带光电调制稳定和光并行解复用技术研究
[10] 超宽带光电调制稳定和光并行解复用技术研究
[11] 2019"万人”领军人才支持计划
[12] 基于微波光子的********技术
[13] 实时高分辨微波光子雷达成像
[14] ********光电振荡器
[15] 多波段、多波束、多制式微波光子超宽带传输与无线接入
[16] 实时高分辨微波光子雷达成像
[17] 实时高分辨微波光子雷达成像
[18] 面向电子对抗及空间定轨的微波光子链路延时测量与补偿技术
[19] 2018“万人”领军人才支持计划
[20] 项目开发
获奖信息
[1] 江苏省科学技术奖
[2] 江苏省科学技术奖一等奖
[3] 日内瓦国际发明展特别金奖(最高奖项)
[4] 中国光学工程学会创新技术奖一等奖
[5] 教育部自然科学奖二等奖
近期论文
查看导师新发文章
(温馨提示:请注意重名现象,建议点开原文通过作者单位确认)
[1] S. L. Pan and Y. M. Zhang, "Microwave Photonic Radars," IEEE/OSA Journal of Lightwave Technology, vol. 38, no. 19, pp. 5450-5484, Oct. 2020. [Invited Tutorial]
[2] S. L. Pan and J. P. Yao, "Photonics-based broadband microwave measurement," IEEE/OSA Journal of Lightwave Technology, vol. 35, no. 16, pp.3498-3513, Aug. 2017. [Invited Tutorial]
[3] T. Qing, S. P. Li, Z. Z. Tang, B. D. Gao, and S. L. Pan*, "Optical vector analysis with attometer resolution, 90-dB dynamic range and THz bandwidth," Nature Communications, vol. 10, 5135, Nov. 2019.
[4] Z. Z. Tang, Y. F. Li, J. P. Yao, and S. L. Pan*, "Photonics-based microwave frequency mixing: methodology and applications," Laser & Photonics Reviews, vol. 14, no. 1, 1800350, Jan. 2020.
[5] S. M. Li, Z. Z. Cui, X. W. Ye, J. Feng, Y. Yang, Z. Q. He, R. Cong, D. Zhu, F. Z. Zhang and S. L. Pan*, "Chip-Based Microwave-Photonic Radar for High-Resolution Imaging," Laser & Photonics Reviews, vol. 14, no. 10, 1900239, Oct. 2020. [Cover Paper]
[6] S. L. Pan, X. W. Ye, Y. M. Zhang, and F. Z. Zhang, "Microwave photonic array radars," IEEE Journal of Microwaves, vol. 1, no. 1, pp. 176-190, Jan. 2021. [Invited]
[7] S. L. Pan, Z. Z. Tang, M. H. Huang and S. M. Li, "Reflective-Type Microring Resonator for On-Chip Reconfigurable Microwave Photonic Systems", IEEE Journal of Selected Topics in Quantum Electronics, vol. 26, no. 5, 7701712, Sep. 2020. [Invited]
[8] S. L. Pan and M. Xue, "Ultrahigh-Resolution Optical Vector Analysis Based on Optical Single-Sideband Modulation," IEEE/OSA Journal of Lightwave Technology, vol. 35, no. 4, pp. 836-845, Feb. 2017. [Invited]
[9] S. L. Pan, D. Zhu, S. F. Liu, K. Xu, Y. T. Dai, T. L. Wang, J. G. Liu, N. H. Zhu, Y. Xue and N. J Liu, “Satellite Payloads Pay Off,” IEEE Microwave Magazine, vol. 16, no. 8, pp. 61-73, Sep. 2015. [Invited Feature Article]
[10] S. L. Pan and J. P. Yao*, "UWB over fiber communications: modulation and transmission," IEEE/OSA Journal of Lightwave Technology, vol. 28, no. 16, pp. 2445-2455, Aug. 2010. [Invited]
[11] Y. M. Zhang and S. L. Pan*, "Broadband Microwave Signal Processing Enabled by Polarization-based Photonic Microwave Phase Shifters," IEEE Journal of Quantum Electronics, vol. 54, no. 4, 0700112, Aug. 2018. [Invited]
[12] D. Zhu and S. L. Pan*, "Broadband Cognitive Radio Enabled by Photonics," IEEE/OSA Journal of Lightwave Technology, vol. 38, no. 12, pp. 3076-3088, Jun. 2020. [Invited]
[1] 朱丹,谢晨旭,朱丹等.Microwave channelizer based on polarization multiplexing and photonic image-reject mixing.2019 International Topical Meeting on Microwave Photonics (MWP),2019
[2] 朱丹,张博文,朱丹等.Time lens with improved aperture to resolution ratio based on a phase modulator.2019 PhotonIcs & Electromagnetics Research Symposium - Spring (PIERS-Spring),2019
[3] 朱丹,丁杰文,朱丹等.Photonics-based receiver for decoupled velocity and range measurement.2019 18th International Conference on Optical Communications and Networks (ICOCN),2019
[4] 朱丹,谢晨旭,谢晨旭等.Microwave photonic channelizer based on polarization multiplexing and photonic dual output image reject mixer.IEEE Access,2019
[5] 张方正,张方正,叶星炜等.Photonics-based radar with balanced I/Q de-chirping for interference-suppressed high-resolution detection and imaging
[6] 张方正,,等.Photonics-based Radar Transceiver For Full-Polarimetric Inverse Synthetic Aperture Imaging.MWP - Int. Top. Meet. Microw. Photonics,2018
[7] 张方正,Ye, Xingwei,Ye, Xingwei等.Photonics-Based High-Resolution 3D Inverse Synthetic Aperture Radar Imaging.IEEE Access,2019
[8] 张方正,Shi, Jingzhan,Shi, Jingzhan等.Photonics-based dual-functional system for simultaneous high-resolution radar imaging and fast frequency measurement.Opt. Lett.,2019
[9] 张方正,张方正,张方正等.Photonics-based radar with balanced I/Q de-chirping for interference-suppressed high-resolution detection and imaging
[10] 朱丹,,等.Photonics-enabled simultaneous self -interference cancellation and image-reject mixing.OPTICS LETTERS,2019
[11] 朱丹,,等.Photonics-based dual-band RF receiver with large crosstalk suppression.Proc SPIE Int Soc Opt Eng,2018
[12] 张方正,,张方正等.Ultra-High Resolution Real-Time Radar Imaging Based on Microwave Photonics.Prog. Electromagn. Res. Symp.,2018
[13] 朱丹,,等.Compact photonic triangular waveform generator with wideband tunability.OPTICAL ENGINEERING,2018
[14] 张方正,,等.超低相噪光电振荡器及其频率综合技术研究.雷达学报,2019
[15] 汪炜,Wang, Wei,Wang, Wei等.A feedback system for the stability improvement of optical frequency comb generating system based on a single integrated PM-DMZM.Proc SPIE Int Soc Opt Eng,2019
[16] 朱丹,,等.Photonics-based reconfigurable multi-band linearly frequency-modulated signal generation.Opt. Express,2018
[17] 朱丹,Zhang, Bowen,Zhang, Bowen等.Tunable triangular frequency modulated microwave waveform generation with improved linearity using an optically injected semiconductor laser.Appl. Opt.,2019
[18] 朱丹,,等.基于光波分复用网络的分布式多目标定位系统.雷达学报,2019
[19] 朱丹,,等.Microwave channelizer based on a photonic dual-output image-reject mixer.Opt. Lett.,2019
[20] 朱丹,,等.Image reject mixer with greatly improved rejection ratio based on the balanced Hartley architecture.IEEE Mtt-S Int. Wirel. Symp., IWS - Proc.,2019