CN EN

尚超

职称:副教授

学历:

学位:博士

电话:

邮箱:cshang@bjtu.edu.cn

教育背景

2008-09 — 2012-12   北京交通大学,理学院,光学工程专业,博士

2006-09 — 2008-06   北京交通大学,理学院,物理电子学专业,硕士

2002-09 — 2006-06   天津大学,精密仪器与光电子工程学院,电子科学与技术专业,学士

工作经历

2019-12      至今         北京交通大学,物理科学与工程学院光学工程学科,副教授

2017-01 — 2019-12   香港理工大学电机工程学系助理研究员

2013-03 — 2016-10   北京邮电大学,电子工程学院,电子科学与技术方向,博士后

研究方向
  • 光信号处理及网络应用技术
  • 光电信息工程
招生专业
  • 光学工程硕士
  • 光电信息工程硕士
科研项目

(1)  科学技术部高技术研究发展中心国家重点研发计划,2021YFB2900800,面向工业互联网应用的超低延迟、超大连接无源光网络关键技术研究, 

      2021-12 至 2025-12,在研,参与单位负责人

(2)  国家自然科学基金委员会,面上项目,62175012,基于Stokes域相干接收和超宽带啁啾连续光激励的分布式光纤传感研究,

      2022-01 至  2025-12,在研,主持

(3)  北京交通大学,基本科研业务费人才基金,2021RC223,分布式光纤声波传感二维相位恢复算法研究,

      2021-04 至 2023-03,在研,主持

(4)  北京市自然科学基金委员会,青年科学基金项目,4144080,偏振敏感型光纤传感中高速偏振态探测器件与信息提取技术的研究,

      2014-01 至 2015-12,已结题,主持

教学工作

导波光学(本科生)

光纤传感器技术研究生

论文/期刊

[1] Jiahao Huo; Shaonan Liu; Chao Shang*; Xiaoying Zhang; Wei Huangfu; Keping Long, Modified DDFTN Algorithm for Band-limited Short-Reach Optical Interconnects, Journal of Lightwave Technology, 2023, Early Access.

[2] Rui Jiang; Zhi Wang; Tao Jia; Ziling Fu; Chao Shang*; Chongqing Wu, Flexible optical fiber channel modeling based on a neural network module, Optics Letters, 2023, 48(16): 4332-4335.

[3] Jiahao Huo; Jian Wang; Yaping Wang; Chao Shang*; Wei Huangfu; Lanlan Liu; Zhi Wang; Keping Long; and Chongqing Wu, Vector distribution measurement of PMD in optical fiber links employing a wavelength-tunable SOP-OTDR, Applied Optics, 2022, 61(13): 3754-3760.

[4] Muhammad Adeel; Chao Shang*; Diya Hu; Huan Wu; Kun Zhu; Aadil Raza; Chao Lu, Impact-based feature extraction utilizing differential signals of Phase-sensitive OTDR, Journal of Lightwave Technology, 2020, 38(8): 2539-2546.

[5] Muhammad Adeel; Javier Tejedor; Javier Macias-Guarasa; Chao Shang*; Chao Lu, Segregating the true perturbation position from ghost energy points region in φ-OTDR systems, Optics Express, 2020, 28(3): 2699-2713.

[6] Kuanglu Yu; Nan Guo; Zhiyuan Cao; Shuwei Lou; Chao Shang*; Jing He, Fast information acquisition using spectra subtraction for Brillouin distributed fiber sensors, Optics Express, 2019, 27(7): 9696-9704.

[7] M. Adeel; C. Shang*; K. Zhu; C. Lu, Nuisance alarm reduction: using a correlation-based algorithm above differential signals in direct detected phase-OTDR systems, Optics Express, 2019, 27(5): 7685-7698.

[8] Chao Shang; Chongqing Wu*; Zhi Wang; Yongjun Wang; Jian Wang; Zhengyong Li; Shuangshou Yang, Method to measure the second-order birefringence vector distribution along optical fibers based on high-speed polarization optical time domain reflectometry, Applied Optics, 2012, 51(14): 2548-2553.

[9] Shang Chao; Wu Chong-Qing*; Li Zheng-Yong; Yang Shuang-Shou; Gao Kai-Qiang; Yu Kuang-Lu; Feng Zhen, Mueller matrix analysis for all optical fiber co-existence of birefringence-polarization dependent gain-mode coupling at a single wavelength, Chinese Physics B, 2011, 20(11): 110201.

[10] Shang Chao; Wu Chong-Qing*; Li Zheng-Yong; Yang Shuang-Shou, A New Distributed Measurement of Birefringence Vectors by P-OTDR Assisted by a High Speed Polarization Analyzer, Chinese Physics Letters, 2011, 28(9): 094212.

[11] Ziling Fu; Zhi Wang*; Peter Bienstman; Rui Jiang; Tao Jia; Huiying Wang; Chao Shang; Chongqing Wu, Threshold plasticity of SOI-GST microring resonators, Optics Express, 2023, 31(22): 37325-37335.

[12] Huan Wu; Chao Shang; Kun Zhu*; Chao Lu, Vibration Detection in Distributed Acoustic Sensor with Threshold-based Technique: a statistical view and analysis, Journal of Lightwave Technology, 2021, 39(12): 4082-4093.

[13] Huan Wu; Bin Zhou; Kun Zhu*; Chao Shang; Hwa-Yaw Tam; Chao Lu, Pattern recognition in distributed fiber-optic acoustic sensor using an intensity and phase stacked convolutional neural network with data augmentation, Optics Express, 2021, 29(3): 3269-3283.

[14] Kun Zhu; Bin Zhou; Huan Wu*; Chao Shang; Linyue Lu; Muhammad Adeel; Yaxi Yan; Zhiyong Zhao; Hwa-Yaw Tam; Chao Lu, Multipath distributed acoustic sensing system based on phase-sensitive optical time-domain reflectometry with frequency division multiplexing technique, Optics and Lasers in Engineering, 2021, 142: 106593.

[15] Dongmei Huang; Feng Li*; Zijian He; Zihao Cheng; Chao Shang; P. K. A. Wai, 400 MHz ultrafast optical coherence tomography, Optics Letters, 2020, 45(24): 6675-6678.

[16] Dongmei Huang; Feng Li*; Chao Shang; Zihao Cheng; P. K. A. Wai, Reconfigurable time-stretched swept laser source with up to 100 MHz sweep rate, 100 nm bandwidth, and 100 mm OCT imaging range, Photonics Research, 2020, 8(8): 1360-1367.

[17] Dongmei Huang; Feng Li*; Chao Shang; Zihao Cheng; S. T. Chu; P. K. A. Wai, Frequency comb swept laser with a high-Q microring filter, Photonics Research, 2020, 8(6): 904-911.

[18] Jiahao Huo; Xian Zhou*; Chao Shang; Wei Huangfu; Jinhui Yuan; Huansheng Ning; Keping Long; Changyuan Yu; Alan Pak Tao Lau; Chao Lu, Theoretical and numerical analyses for PDM-IM signals using Stokes vector receivers, SCIENCE CHINA Information Sciences, 2020, 63(10): 202307.

[19] Fu Wang; Zhi Wang; Chongqing Wu*; Yaya Mao; Chao Shang; Kaiqiang Gao; Qiang Li, Tailoring the time delay of optical pulse/sequence employing cascaded SOA and band-pass filter, Journal of Modern Optics, 2016, 63(11): 1092-1098.

[20] Lanlan Liu; Chongqing Wu*; Chao Shang; Zhengyong Li; Jian Wang, Quaternion Approach to the Measurement of the Local Birefringence Distribution in Optical Fibers, IEEE Photonics Journal, 2015, 7(4): 6901014.

[21] Liu Lan-Lan; Wu Chong-Qing*; Shang Chao; Wang Jian; Gao Kai-Qiang, Quaternion Approach to Solve Coupled Nonlinear Schrodinger Equation and Crosstalk of Quarter-Phase-Shift-Key Signals in Polarization Multiplexing Systems, Chinese Physics Letters, 2015, 32(8): 084202.

[22] Kaiqiang Gao; Chongqing Wu*; Xinzhi Sheng; Chao Shang; Lanlan Liu; Jian Wang, Optical code division multiple access secure communications systems with rapid reconfigurable polarization shift key user code, Optical Engineering, 2015, 54(9): 096101.

[23] Guodong Liu; Chongqing Wu*; Fu Wang; Tianyong Zhang; Chao Shang; Kaiqiang Gao, Measurement of the linewidth enhancement factor based on nonlinear polarization rotation of semiconductor optical amplifier, Applied Optics, 2015, 54(16): 5162-5166.

[24] Wang Yongjun*; Xin Xiangjun; Shang Chao, Multichannel packets buffering in cascaded double-loop optical buffer based on the pure phase switching of gain-transparent semiconductor optical amplifier, Optical Engineering, 2014, 53(1): 016101.

[25] Yongjun Wang*; Xiangjun Xin; Chao Shang, All-optical buffer using nonlinear polarization rotation effect of gain-transparent semiconductor optical amplifier, Applied Optics, 2014, 53(8): 1512-1517.

[26] Li Zheng-Yong*; Wu Chong-Qing; Shang Chao; Yu Xiang-Zhi, Mueller-Matrix-Based Differential Rotation Method for Precise Measurement of Fiber Birefringence Vector, Chinese Physics Letters, 2010, 27(10): 104201.


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