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硕士生导师

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姓名:毛渊

出生年月:19857

学历学位:研究生/博士

所属学院:中山研究院

电子邮件:yuan.mao@cust.edu.cn

指导研究生所属学科及导师类别:光电信息工程:硕士生导师

研究领域:分布式光纤传感、无线光通讯、光纤通讯

毛渊博士在分布式光纤传感器的研究领域上取得了一系列国际领先的创新性和突破性成果。在解决分布式光纤传感器的空间分辨率的提高,减少选择性衰落的影响,以及多参数测量等关键问题上提出很多新颖的方法, 并且成功获得多项国际专利的授权。 他的研究也发表在重要的国际期刊及会议上并得到国际同行的高度认可。更为重要的是毛博士成功将光纤传感器的研究成果用于土木工程及石油开采等领域,对分布式光纤传感器领域的进一步发展起到重要的促进作用。

毛渊博士是IEEE的高级会员,也是OSA, SPIEIOP等专业组织的成员。


教育经历

2009 4 -2013 11 月,香港理工大学电子及资讯工程学系博士研究生。 指导老师:吕超教授。研究方向为分布式光纤传感器。期间通过将光纤通讯技术 应用于传感系统,接触编码增益来提高传感系统的信噪比,实现了当时业界最高 的1cm 空间分辨率的布里渊传感器

200710-20094月,香港理工大学电子及资讯工程学系硕士研究生。 指导老师:吕超教授。研究方向为光子晶体光纤的设计制造及其在传感中的应用

20047-20077月,清华大学理学院物理系基础科学班本科。 指导老师:冯正和教授

20039-20047月,清华大学化工系本科


工作经历

20221月至现在,广东省中山市长春理工大学中山研究院,教师

20194月至20215月,沙特阿拉伯王国阿卜杜拉国王科技大学,研究科学家

20179月至20193月,沙特阿拉伯王国阿卜杜拉国王科技大学,博士后研究员

20169月至20178月,香港科技及高等教育学院,讲师

201511月至20178月,创立重庆揽光科技有限公司

201410月至201510, 华为技术有限公司任研究工程师


代表性科研项目

1. “Distributed optical sensor for the oil and gas industry”, KAUST-I&ED 项目,经费: 美金 888,100.

2. “Versatile, portable and robust optical fiber sensor for oil and gas industry”, 沙特阿美 联合研究项目,经费:美金1,871,473.

3. “Optical fiber-based LIDAR: A Robust Imaging System for oil and gas industry”,沙 特 阿美联合研究项目,经费:美金 1,588,742.

4. “Fiber optical sensing solution for early detection for red palm weevil”, KAUST-I&ED 项目,经费:美金:990,938.

5. “Red Palm Weevil special fund”, KAUST-OCRF 项 目 , 经 费 美 金 190,000.

6. “Early detection of red palm weevil using acoustic and optical method”, KAUST-OCRF 项目,经费:美金 421,500.00.

7. “Broadband light source for distributed fiber sensing (Turnkey Laser Box)”, 沙特阿美 联合研究项目,经费:美金 968,973.00.


代表性论文

[1] (共同一作)Islam Ashry, Yuan MAO, Beiwei Wang, Frode Hveding, Ahmed Bukhamseen, Tien Khee Ng, Boon Ooi (2021). A Review of Distributed Fiber--optic Sensing in the Oil and Gas Industry. Journal of Lightwave Technology. PP. 1-1. 10.1109/JLT.2021.3135653.

[2](共同一作)Biwei Wang, Yuan Mao, Islam Ashry, Yousef Al-Fehaid, AbdulmoneimAlShawaf, Tien Khee Ng, Changyuan Yu, and Boon S. Ooi,* “Towards Detecting Red Palm Weevil Using MachineLearning and Fiber Optic Distributed AcousticSensing,” Sensors 21 (5) 1591 (2021) DOI: 10.3390/s21051592.

[3] (共同一作)Ashry, Islam, Yuan Mao, Abderrahmen Trichili, Biwei Wang, Tien Khee Ng, Mohamed-Slim Alouini, and Boon S. Ooi. "A Review of Using Few-Mode Fibers for Optical Sensing." IEEE Access (2020).

[4] Hu, Fangchen, Jorge A. Holguin-Lerma, Yuan Mao, Peng Zou, Chao Shen, Tien Khee Ng, Boon S. Ooi, and Nan Chi. "Demonstration of a low-complexity memory-polynomialaided neural network equalizer for CAP visible-light communication with superluminescent diode." Opto-Electronic Advances 3, no. 08 (2020): 200009.

[5] Omar Alkhazragi, Fangchen Hu, Peng Zou, Yinaer Ha, Chun Hong Kang, Yuan Mao, Tien Khee Ng, Nan Chi, and Boon S. Ooi, "Gbit/s ultraviolet-C diffuse-line-of-sight communication based on probabilistically shaped DMT and diversity reception." Optics Express 28.7 (2020): 9111-9122.

[6] ( 第 一 作 者 )Yuan MAO, Islam Ashry, Biwei WANG, Frode Hveding, Ahmed Y. Bukhamseen, TienKhee Ng, and Boon S. Ooi, “Sensing within the OTDR dead-zone using a two-mode fiber”, Optics Letters, 2020, 45(11): 2969-2972.

[7]( 共 同 一 作 )Islam Ashry, Yuan Mao, Yousef Al-Fehaid, Abdulmoneim Al-Shawaf, Mansour Al-Bagshi, Salman Al-Brahim, Tien Khee Ng, and Boon S. Ooi, "Early detection of red palm weevil using distributed optical sensor." Scientific Reports (Nature Publisher Group) 10.1 (2020).

[8](第一作者)Yuan Mao, Islam Ashry, Frode Hveding, Ahmed Bukhamsin, Yuxi Hong, Tien Khee Ng, and Boon S. Ooi, "Simultaneous Distributed Acoustic and Temperature Sensing Using a Multimode Fiber." IEEE Journal of Selected Topics in Quantum Electronics (2020).

[9]( 第 一 作 者 )Yuan Mao, Islam Ashry, Mohd Sharizal Alias, Tien Khee Ng, Frode Hveding, Muhammad Arsalan, and Boon S. Ooi, "Investigating the performance of a few- mode fiber for distributed acoustic sensing." IEEE Photonics Journal 11.5 (2019): 1- 10.

[10] ( 共 同 一 作 )Islam Ashry, Yuan Mao, Mohammed Sharizal, Tien Khee Ng, Frode Hveding, Muhammad Arsalan, and Boon Ooi, “Normalized differential method for improving the signal-to-noise ratio of a distributed acoustic sensor." Applied optics 58.18 (2019): 4933-4938.

[11] Yujian Guo, Omar Alkhazragi, Chun Hong Kang, Chao Shen, Yuan Mao, Xiaobin Sun, Tien Khee Ng, and Boon S. Ooi, "A tutorial on laser-based lighting and visible light communications: device and technology." Chinese Optics Letters 17.4 (2019): 040601.

[12](通讯作者)Zhang, L., Zuo, T., Mao, Y*., Zhang, Q., Zhou, E., Liu, G. N., and Xu, X. "Beyond 100-Gb/s transmission over 80-km SMF using direct-detection SSB-DMT at Cband." Journal of Lightwave Technology 34.2 (2016): 723-729.

[13](第一作者)Mao, Y., Guo, N., YU, K., Tam, H., and Lu, C. "1-cm-spatialresolution Brillouin optical time-domain analysis based on bright pulse Brillouin gain and complementary code." IEEE Photonics Journal 4.6 (2012): 2243-2248.

[14] Fernandez, A., Mao, Y., Lu, C., and Chi, J. "Combination of phase modulation and coding for SNR enhancement in distributed Brillouin sensors." Electronics letters 47.8 (2011): 509- 510.

[15] Li, J., Mao, Y., Lu, C., Tam, H. Y., & Wai, P. K. A. "Polarization splitting of photonic crystal fiber with hybrid guidance mechanisms." IEEE Photonics Technology Letters 23.18 (2011): 1358-1360.

[16] Jie Li, Yuan Mao, Chao Lu, Hwa Yaw Tam, and P. K. A. Wai, "Polarizing properties of photonic crystal fibers with high-index cladding defects." Journal of lightwave technology 28.11 (2010): 1608-1614.


代表性专利

[1] 张亮,左天健,毛渊,光通信系统中处理信号的装置和方法“, 中国专利,授 权号:CN108141284B, 授权日期:2020 2 14 .

[2] “Hybrid distributed acoustic testing”, 美国专利,专利号: 10,634,553 (已授权).

[3] “Simultaneous distribution temperature and vibration sensing using multimode fiber”, 美 国 专利,专利号: 10,880,007 (已授权).

[4] “Quasi-fundamental-mode operated multimode fiber for distributed acoustic sensing”, 美 国 专利,专利号: 10,962,408 (已授权).

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