信息工程学院博/硕士导师信息表
学历/学位:研究生/博士 电话:18971146987
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
2008/09~2012/03 华中科技大学光电学院,光学工程 博士
2003/08~2008/08 中兴通讯
2002/07~2003/07 光迅科技
1999/09~2002/06 中国科学院光电技术研究所,物理电子学 硕士
1995/09~1999/06 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***”,2025/10~2026/12,148.68万
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, 101万
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, 100万
4.JKW重大专项子项,“***振动解调仪研制***”,2023/01~2024年/12 , 518万
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”,2024/1-2025/12, 33万
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, 136万
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”,2022/9~2024/8,5万
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”,2020/12~2024/12, 30万
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”,2022/12~2025/12,30万
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”,2022/10~2024/12,20万
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。
近5年发表论文:
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:60(7):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篇
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