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唐健冠

发布时间:2022-04-09

信息工程学院博/硕士导师信息表

                                   姓名:唐健冠            职称:副研究员/博导

学历/学位:研究生/博士  电话:18971146987

邮箱tangjg@whut.edu.cn

实验室地址:光纤传感技术与网络国家工程研究中心(德生楼)

学术型博士/硕士:信息与通信工程

专业型博士/硕士:电子信息                                                                

工作与教育经历:

2018/07~ 2019/07   英国南安普顿大学光子研究中心访问学者

2012/03~现在     武汉理工大学光纤传感技术国家工程研究中心,副研究员

2008/092012/03  华中科技大学光电学院,光学工程 博士

2003/082008/08  中兴通讯

2002/072003/07  光迅科技  

1999/092002/06  中国科学院光电技术研究所,物理电子学 硕士

1995/091999/06  太原理工大学,物理与光电工程学院,学士

主要研究方向:

  (1)海量振动时序信号处理与深度学习智能识别算法

面向海量传感数据,开展数字滤波、时频特征提取、机器学习 / 深度学习模型搭建,实现结构损伤识别与预警,主攻信号处理、人工智能方向

  (2)多模态融合智能降噪与信号处理

近几年主持的主要研究项目:

1.202525HX06,“高灵敏光纤振动***”,2025/10~2026/12,148.68

2.企业委托,“新型基础设施建设工程高滩守护位移变形监测”,2025/12~2026/12, 101

3.全国重点实验室自主创新基金,“基于光纤传感内河航道水声与护岸动态监测技术研究”,2024/9-2026/8, 100

4.JKW重大专项子项,“***振动解调仪研制***”2023/01~2024/12 , 518

5.西安航天计量测试研究所,“光纤光栅高低温仿真及应变补偿技术研究”,2024/1-2025/1233

6.科技部重点研发项目,高精度多参数拉丝塔光栅陈列光纤传感器2021/ 12~ 2024/12, 136

7.湖北省自然科学基金基于弱光栅阵列和深度学习光纤振动传感的管道损伤识别研究2022/9~2024/85

8.企业委托,光栅阵列传感光纤智能电缆及监测预警系统装备研发2020/12~2024/1230

9.企业委托,“基于新一代光纤传感技术的舰艇平台环境参量监测研究”,2022/12~2025/1230

10.企业委托,光栅阵列传感光纤复合智能电缆相关技术攻关2022/10~2024/1220

主要研究成果:

   主持多项国家级、省部级以及企业委托项目,获得中国仪器仪表学会科学技术进步奖一等奖、中国建筑材料联合会/中国硅酸盐学会技术发明奖一等奖,建筑材料科学技术进步一等奖、申请国家发明专利60余项,授权发明专利41项,专利成果产业化3项,价值620万元,发表论文40余篇。

5年发表论文:

1.Zhengzheng Tan, Jianguan Tang *,etc. Design and Optimization of Fiber-Optic Mandrel Accelerometer Based on UWFBG. IEEE Transactions on Instrumentation and Measurement, 75:9512611,2026.

2.Yun Wang, Yutang Dai, Jianguan Tang, etc. Optimized design of a lightweight monolithic FBG dual-axis accelerometer featuring parallel flexure hinges. Sensors and Actuators A: Physical, 402:117643,2026.

3.Zhengzheng Tan, Jianguan Tang*, et al., A flexible sensitivity tuning strategy for extending the dynamic range of UWFBG-based fiber-optic accelerometers, Optics Letters, 50(24):7592-7595,2025

4.Yun Wang, Yutang Dai, Jianguan Tang, etc. Optimized Design of a Disc-Type Weak Fiber Bragg Grating Array Accelerometer Based on Multiturn Fiber Coils. Journal of Lightwave Technology, 43(15):7478-7488,2025.

5.Pinzeng Cheng, Jianguan Tang*,et al. Sensitivity-Enhanced Fiber-Optic Diaphragm Accelerometer Array by Optimizing Multiturn Fiber Coils. IEEE Sensors Journal: 25(15):28397-28405,2025.

6.Haozhi Wang, Jianguan Tang*, et al.. High-performance accelerometer array with chirped pulse modulation using reference interferometric architecture. Optics Express, 33(10):21441-21452,2025.

7.Zhengzheng Tan, Jianguan Tang*, et al.. High-sensitivity U-shaped optical fiber strain sensor with avoidance of temperature cross-sensitivity. IEEE Sensors Journal: 25(13):24286-24293,2025.

8. Zhengzheng Tan, Jianguan Tang*, et al.. Highly sensitive and wide frequency response fiber-optic accelerometer array with switchable resonance frequency. Measurement, 255:118110,2025.

9.Wenhai Huang, Jianguan Tang*, et al.. Enhancing dynamic range of High-Sensitivity Quasi-Distributed accelerometer array based on UWFBG by employing TDU algorithm. Optics & Laser Technology, 180:111475,2025 

10.Cong Liu, Yu Wang, Ke Tang, Jianguan Tang, et al.. Distributed multi-parameter sensing using composite optical fibers of hybrid ultra-weak fiber Bragg gratings. Optics & Laser Technology, 180:111503,2025.

11.Cong Liu, Haozhi Wang, Ruofan Wang, Yunpeng Wang, Jianguan Tang, etc. UWFBG Enhanced Distributed Dual-Parameter Sensing System Based on Laser Phase Noise Compensation and Variational Mode Decomposition. Journal of Lightwave Technology, 43(14):7001-7012,2025.

12.Yun Wang, Yutang Dai, Minghui Lu, Jianguan Tang, etc.. Design and analysis of a high-sensitivity FBG accelerometer with a flexural bearing. Measurement, 242:116093,2025.

13.Cong Liu, Haozhi Wang, Ruofan Wang, Yunpeng Wang, Jianguan Tang, etc. UWFBG Enhanced Distributed Dual-parameter Sensing System Based on Laser Phase Noise Compensation and Variational Mode Decomposition. Journal of Lightwave Technology:1-11,2025.

14.Yun Wang, Yutang Dai, Jianguan Tang, etc. Optimized Design of a Disc-Type Weak Fiber Bragg Grating Array Accelerometer Based on Multiturn Fiber Coils. Journal of Lightwave Technology: 43(15):7478-7488,2025.

15.Qianfeng Liu, Dian Fan, Ai Zhou, Jianguan Tang*, etc. Medium-Temperature Resistance Drawing-Tower Grating Array Fabrication. IEEE Sensors Journal, 23(18):21314-21320,2023.

16.Jianguan Tang*, Shuqi Huang, etc. High-temperature resistance weak fiber Bragg grating array fabrication. Optical Fiber Technology, 80:103411,2023. 

17.Cong Liu, Shuchang Qiu, Guodong Wang, Cheng Cheng, Jianguan Tang*, etc. Simultaneous distributed acoustic and temperature sensing system based on ultra-weak chirped fiber Bragg grating array. Optics Express, 31(11):18516-18524,2023.

18.唐健冠, 黄姝琪, 郭会勇*, 范典, 杨明红. 耐高温光纤布拉格光栅阵列在线制备与性能研究. 激光与光电子学进展:607):0706002-1~6,2023. 

19.唐健冠, 刘宇哲, 李成立, 郭会勇, 杨明红*. 基于超弱光纤布拉格光栅的高信噪比分布式振动传感系统. 光学学报, 41(13):118-124, 2021.

20.Minghong Yang, Hao Zhan, Cheng Cheng, Weibing Gan, Dian Fan, Jianguan Tang*. Large-capacity and long-distance distributed acoustic sensing based on an ultra-weak fiber Bragg grating array with an optimized pulsed optical power arrangement. Optics Express, 30(10):16931-16937, 2022. 

21.Jianguan Tang, Guodong Wang, et al.. Distributed Acoustic Sensing System Based on Inserting-Zero Golay Coding With Ultra-Weak Fiber Bragg Gratings. IEEE Sensors Journal, 22(16):15985-15990, 2022.  

22.Jianguan Tang, Longbai Cai, et al.. Distributed acoustic sensors with wide frequency response based on UWFBG array utilizing dual-pulse detection. Optical Fiber Technology, 61:102452, 2021. 

23.C. Li, J. Tang, et al.. An Enhanced Distributed Acoustic Sensor with Large Temperature Tolerance Based on Ultra-Weak Fiber Bragg Grating Array. IEEE Photonics Journal, 12(4):1-11, 2020.  

24.Chengli Li, Jianguan Tang, et al., Minghong Yang. Simultaneously distributed temperature and dynamic strain sensing based on a hybrid ultra-weak fiber grating array. Optics Express, 28(23):34309-34319, 2020.  

指导学生获得荣誉

   2022年-2025年研究生荣获国家奖学金5人次、小米奖学金1人次,校级优秀硕士学位论文3

   大学生科技创新/创业竞赛项目优秀指导教师

指导研究生获得创新/创业竞赛一等奖、二等奖多项

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