DocumentCode :
1759060
Title :
Precise Time Delay Sensing and Stable Frequency Dissemination on Arbitrary Intermediate Point Along Fiber-Optic Loop Link With RF Phase Locking Assistance
Author :
Zhongze Jiang ; Yitang Dai ; Anxu Zhang ; Feifei Yin ; Jianqiang Li ; Kun Xu ; Qiang Lv ; Tianpeng Ren ; Geshi Tang
Author_Institution :
State Key Lab. of Inf. Photonics & Opt. Commun., Beijing Univ. of Posts & Telecommun., Beijing, China
Volume :
7
Issue :
2
fYear :
2015
fDate :
42095
Firstpage :
1
Lastpage :
9
Abstract :
Precise time delay sensing combined with stable frequency dissemination on an arbitrary intermediate point along a fiber-optic loop link is presented. Based on λ-dispersion-induced radio-frequency (RF) phase locking, the whole loop time delay and phase shift are first stabilized. The time and frequency signals are carried on the same optical carrier and are delivered to both the clockwise and anticlockwise directions. On the intermediate point, the instantaneous time delay from the central station to that point can be acquired by measuring the delay difference. The stable frequency standard with twice the angular frequency of the RF reference can be recovered on the intermediate point by mixing the RFs in the two directions. In the 45-km fiber loop experiment, the variation of the sensed time delay is limited in ±50-ps range, and the time deviation of the sensed time delay is measured to be 19.79 ps after 1-s averaging and 0.896 ps after 103-s averaging, as compared to the real delay value. The overlapping Allan deviation of the recovered 2.42-GHz frequency reaches 2.04 × 1013 and 1.71 × 1016 at 1 s and 104 s, respectively. The loop delay tunable range is in proportion to the fiber length, giving the potential of constructing a long-distance fiber loop link.
Keywords :
delays; microwave photonics; optical links; radio-over-fibre; λ-dispersion-induced radiofrequency phase locking; Allan deviation; RF phase locking assistance; arbitrary intermediate point; delay difference; distance 45 km; fiber-optic loop link; frequency 2.42 GHz; loop delay tunable range; optical carrier; precise time delay sensing; stable frequency dissemination; stable frequency standard; time 0.896 ps; time 19.79 ps; Delay effects; Delays; Optical sensors; Radio frequency; Time-frequency analysis; Fiber optics links and subsystems; Microwave photonics; Time and frequency delivery; fiber optics links and subsystems; time and frequency delivery;
fLanguage :
English
Journal_Title :
Photonics Journal, IEEE
Publisher :
ieee
ISSN :
1943-0655
Type :
jour
DOI :
10.1109/JPHOT.2015.2411212
Filename :
7056454
Link To Document :
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