Novel compensation technique for mitigating dispersion in fiber-optic microwave frequency transfer systems

被引:0
|
作者
鱼少少 [1 ,2 ]
赵文宇 [1 ,2 ]
王鑫 [1 ,2 ]
李杏花 [1 ,2 ]
张首刚 [1 ,2 ]
机构
[1] Key Laboratory of Time Reference and Applications, National Time Service Center, Chinese Academy of Sciences
[2] University of Chinese Academy of
关键词
D O I
暂无
中图分类号
TN929.11 [光纤通信];
学科分类号
摘要
In this paper, a novel compensation technique is presented for mitigating dispersion in fiber optic microwave frequency transfer systems. By introducing an additional carrier light into the transmission link, the system effectively eliminates the effect of dispersion on temperature in the fiber link. The experimental results show that the long-term stability of microwave frequency transfer over a 100 km optical fiber link is better than 10-18/d. This remarkable result strongly demonstrates the feasibility of our proposed scheme, while also highlighting its significant practical significance in ensuring the long-term stability of microwave frequency transfer across hundreds of kilometers of optical fibers.
引用
收藏
页码:13 / 18
页数:6
相关论文
共 50 条
  • [1] Novel compensation technique for mitigating dispersion in fiber-optic microwave frequency transfer systems
    Yu, Shaoshao
    Zhao, Wenyu
    Wang, Xin
    Li, Xinghua
    Zhang, Shougang
    CHINESE OPTICS LETTERS, 2025, 23 (02)
  • [2] Chromatic dispersion compensation in fiber-optic communication systems
    Zhang, Hua
    Cao, Wen-Hua
    2001, China National Publishing Industry Trading Corporation (22):
  • [3] Nonlinear electronic dispersion compensation techniques for fiber-optic communication systems
    Zhu, Xianming
    Kumar, Shiva
    Raghavan, Srikanth
    Maur, Yihong
    Lobanov, Sergey
    2008 CONFERENCE ON OPTICAL FIBER COMMUNICATION/NATIONAL FIBER OPTIC ENGINEERS CONFERENCE, VOLS 1-8, 2008, : 504 - +
  • [4] Compensation of chromatic and polarization mode dispersion in fiber-optic communication lines in microwave signals transmittion
    Ermolaev, A. N.
    Krishpents, G. P.
    Davydov, V. V.
    Vysoczkiy, M. G.
    3RD INTERNATIONAL SCHOOL AND CONFERENCE ON OPTOELECTRONICS, PHOTONICS, ENGINEERING AND NANOSTRUCTURES (SAINT PETERSBURG OPEN 2016), 2016, 741
  • [5] Passive phase noise compensation for fiber-optic radio frequency transfer with a nonsynchronized source
    Lin, Tiancheng
    Wu, Guiling
    Li, Hongwei
    Wang, Guoyong
    Chen, Jianping
    CHINESE OPTICS LETTERS, 2018, 16 (10)
  • [6] Passive phase noise compensation for fiber-optic radio frequency transfer with a nonsynchronized source
    林天成
    吴龟灵
    李洪伟
    王国永
    陈建平
    Chinese Optics Letters, 2018, 16 (10) : 9 - 12
  • [7] Fiber-optic radio frequency transfer based on passive phase noise compensation with frequency dividing and filtering
    Huang, Rui
    Wu, Guiling
    Li, Hongwei
    Chen, Jianping
    OPTICS LETTERS, 2016, 41 (03) : 626 - 629
  • [8] Digital compensation of cross-phase modulation distortions using perturbation technique for dispersion-managed fiber-optic systems
    Liang, Xiaojun
    Kumar, Shiva
    Shao, Jing
    Malckiha, Mahdi
    Plant, David V.
    OPTICS EXPRESS, 2014, 22 (17): : 20634 - 20645
  • [9] Multi-access fiber-optic radio frequency transfer with passive phase noise compensation
    Li, Hongwei
    Wu, Guiling
    Zhang, Jiapeng
    Shen, Jianguo
    Chen, Jianping
    OPTICS LETTERS, 2016, 41 (24) : 5672 - 5675
  • [10] Closed-loop polarization mode dispersion mitigation for fiber-optic time and frequency transfer
    Fordell, Thomas
    Wallin, Anders E.
    Lindvall, Thomas
    Hanhijärvi, Kalle
    Optics Letters, 2025, 50 (06) : 1759 - 1762