• Acta Optica Sinica
  • Vol. 39, Issue 6, 0606002 (2019)
Xiaoyu Zhao, Lin Lu*, Chuanxin Wu, Heng Wei, hang Liu, and Yimei Wei
Author Affiliations
  • Institute of Communications Engineering, Army Engineering University of PLA, Nanjing, Jiangsu 210007, China
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    DOI: 10.3788/AOS201939.0606002 Cite this Article Set citation alerts
    Xiaoyu Zhao, Lin Lu, Chuanxin Wu, Heng Wei, hang Liu, Yimei Wei. Ring Fiber Network Based Multipoint Time-Frequency Dissemination Method with High Precision[J]. Acta Optica Sinica, 2019, 39(6): 0606002 Copy Citation Text show less
    Diagram of self-perception at remote stations. (a) Solution 1; (b) solution 2
    Fig. 1. Diagram of self-perception at remote stations. (a) Solution 1; (b) solution 2
    Schematic illustration of multi-point time-frequency dissemination via ring fiber network
    Fig. 2. Schematic illustration of multi-point time-frequency dissemination via ring fiber network
    Deviation measurement results before and after compensation for time-frequency dissemination deviation introduced by dispersion in three remote stations
    Fig. 3. Deviation measurement results before and after compensation for time-frequency dissemination deviation introduced by dispersion in three remote stations
    One-way time delay of 100 km fibers under link temperature change in 13500 s
    Fig. 4. One-way time delay of 100 km fibers under link temperature change in 13500 s
    Time-frequency dissemination stability via 100 km ring fiber network. (a) Time-frequency dissemination stability extremity of system; time-frequency dissemination stability when remote station locates at (b) L2=25 km, (c) L2=50 km, and (d) L2=75 km; (e) time-frequency dissemination stability under room-temperature of 16-17 ℃ when L2=25 km
    Fig. 5. Time-frequency dissemination stability via 100 km ring fiber network. (a) Time-frequency dissemination stability extremity of system; time-frequency dissemination stability when remote station locates at (b) L2=25 km, (c) L2=50 km, and (d) L2=75 km; (e) time-frequency dissemination stability under room-temperature of 16-17 ℃ when L2=25 km
    Length of anti-clockwise links (L2) /kmInitial deviation /psTheoretical compensation /psDeviation after dispersion compensation /ps
    25-23317074
    50-386340-15
    75-551510-130
    Table 1. Initial deviation, theoretical compensation of dispersion correction deviation, and final deviation after dispersion compensation
    Xiaoyu Zhao, Lin Lu, Chuanxin Wu, Heng Wei, hang Liu, Yimei Wei. Ring Fiber Network Based Multipoint Time-Frequency Dissemination Method with High Precision[J]. Acta Optica Sinica, 2019, 39(6): 0606002
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