主 要 成 果 | 主要主持的项目:
[1] 973子课题,701-2-2,声光锁模激光器和双包层掺镱光纤放大器的研究,2001/01-2003/12,20万,已结题,第三参与者; [2] *****课题,0304NG0022,超短脉冲光纤激光器,2004/06-2007/06,80万,已结题,第四参与者; [3] *****课题同时为神光Ⅲ前端总体技术设计研究的863课题,0404NG0023,光脉冲编码器,2004/06-2007/06,300万,已结题,主持; [4] *****课题,0803NG0014,脉冲泵浦双包层光纤放大器,2005/06-2008/06, 80万,已结题,主持; [5] 上海市教委课题,10YZ171,分布式定位光纤温度传感器,2010/01-2012/12, 8 , 已结题,主持; [6] 与上海欣诺通信有限公司合作的横向课题,DZ-021,光缆监测振动传感器的研制,2018/11-2019/12,12万,已结题,主持; [7] 上海市科委, 自然科学基金, 19ZR1421700, 基于轨道高架桥梁的光纤传感技术运行机理研究, 2019-07 至 2022-06,20万元, 已结题, 主持; [8] 上海市松江区教育局、工会、人社局和财政局, 政产学研合作, 21SZ0102, 光纤传感设备的研制,2018至今,20万元/年,主持; [9] 新型相位解调技术及光纤传感系统(技术成果转让),上海欣诺通信技术股份有限公司,30万元,2022-08,已转让; [10] 一种数字全息显微相位畸变补偿方法及装置工艺(技术成果转移), 上海松控科技有限公司, 20万元, 2025-08,已转让; [11] 国家自然科学基金面上项目,全息-干涉散射协同的无标记病毒实时三维成像与追踪方法,49万,2027-2030,在研。
主要发表的期刊论文(以下收录的部分SCI论文): [1] Xin Tang, Keke Liu, Jie Chen, Yong Kong, Zhisong Li. Solution to the shearing problem via guided diffusion. Optics Express, 2026, 34(2):2381-2395. [2] Xin Tang, Xinli Zheng, Jie Chen, Zhuoyue Li, Keke Liu, Jingfeng Zhu, Ping Zhong, Jiancheng Qi, and Yong Kong. Modeling Uncertainty in Deep Learning for Focus Prediction of Defocused Images. Journal of Lightwave Technology, 2025, 43(15):7219-7232. [3] Siyu Wei; Yong Kong; Jie Chen; Xin Tang; Chao Wang; Yuzirui Zhang; Tianci Zhao; An HSRCFAT–based small-sample super-resolution reconstruction framework for off-axis digital holography, Applied Optics, 2025.01, 65(4) . [4] KeKe Liu; Jie Chen; HouZhang Liao; Geng Chen; Xin Tang; Yong Kong; Digital holographic automatic focusing based on improved focusNET, Optical Engineering, 2025, 64(05): 056106-1- 056106-14 . [5] geng chen; Jie Chen; houzhang liao; keke liu; Xin Tang; Yong Kong; Super-resolution reconstruction of off-axis digital holography based on Real-ESRGAN, Applied Optics, 2025.07,64(9): 2245-2254. [6] JIE CHEN; HOUZHANG LIAO; YONG KONG; DAWEI ZHANG; SONGLIN ZHUANG; Speckle denoising based on Swin-UNet in digital holographic interferometry, OPTICS EXPRESS, 2024, 32(19). [7] JIE CHEN; YONG KONG; DAWEI ZHANG; YINGHUA FU; SONGLIN ZHUANG; Two-dimensional phase unwrapping based on U2-Net in complex noise environment, OPTICS EXPRESS, 2023, 31(18) . [8] Zhenrong Zhang, Zili Zhang, Jing Cheng, Yong Kong,Leihong Zhang, Dawei Zhang, Songlin Zhuang, Wei Peng, Fengshou Wue, Yunfeng Zhu, Xiao Cui. An improved phase generated carrier demodulation algorithm with high stability and low harmonic distortion[J].Optics Communications, 2022, 524:128800(1-5). [9] Jun He, Xing Hu, Dawei Zhang, Yong Kong, Jing Cheng, and Wenzhe Xiao. Semi-supervised learning for optical fiber sensor road intrusion signal detection[J].Appl. Opt. 2022,61:65-72. [10] Tian-Chen Yuan, Fei Chen,Jian Yang, Rui-Gang Song, and Yong Kong. A Novel Circular Plate Acoustic Energy Harvester for Urban Railway Noise[J].Shock and Vibration,2021,6647162(1-13). [11] Tongyao Tu, Yong Kong, et al, Suppression of Speckle Noise in Digital Holography With Spatial and Temporal Domain Depolarization[J].IEEE ACCESS, 2020, 8:22266-22274. [12] Yong Kong,Wei Ding, et al, Double Mach–Zehnder acoustic emission interferometer for detection of damage in structures[J].Optics Communications, 2020, 459:125076(1-6). [13] Xinlei Qian, Yong Kong, et al, Modified phase-generated carrier demodulation compensated for the propagation delay of the fiber[J].Optics Communications, 2020, 457:124595(1-7). [14] Yong Kong, Yang Liu, Yi Shi, Ansari. Research on the ϕ-OTDR fiber sensor sensitive for all of the distance,Optics Communications[J], 2018, 407:148-152. [15] Hua Han, Yang Liu, Kong Yong, Farhad Ansari, Todd Taylor. The influence of pretilt and twist angle on the output characteristic of twisted nematic liquid crystal filter[J].optics and spectroscopy, 2018,125(2):275-280. [16] Hua Han, Yang Liu, Kong Yong, Farhad Ansari, Todd Taylor. The influence of stress on the quartz birefringent optical filter[J].Optical and Quantum Electronics, 2017,50(1) 1-9. [17] Kong, Yong, et al. Spectrum research on the passive mode-locked Yb3+-doped fiber laser[J]. Optical and Quantum Electronics, 2014,VOL46, No8, 1027-1037. [18] Kong Yong, et al, A Quartz Birefringent Filter Insensitive to Incident Angle,Optics & Laser Technology, 2012, VOL 44, No 5, 1497-1500. [19] Kong Yong, Qi Zhong LIU, et al, Wide band gain flattening Yb3+-doped fiber amplifier, Optical Communication ,VOL 284, No3,2011, 869-872. [20] Kong Yong,Qi Zhong LIU, et al, 64 channel optical pulse stacker, Journal of Lightwave technology,VOL 27, No15,2009,3017-3020. [21] Kong Yong,Qi Zhong LIU, et al, Pulsed pumped Yb3+-doped double-cladding fiber amplifier, Journal of Modern Optics, VOL 56, No5,597-600,2009. [22] Kong Yong, Wang ChunYu, et al, Double-cladding Yb3+ fiber for free-space optical communication, Microwave and Optical Technology Letters, VOL 49, No4,2007, 889-892. [23] Kong Yong, Guo Mingxiu, et al, Numerical analysis of polarization character in Yb3+-doped fiber amplifiers, Chinese Optics Letters,2003, VOL 1, No9,506-508.
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