Title :
Multipoint joint time and frequency dissemination in delay-stabilized fiber optic links
Author :
Sliwczynski, L. ; Krehlik, P.
Author_Institution :
Electron. Dept., AGH Univ. of Sci. & Technol., Krakow, Poland
Abstract :
This paper presents the system for dissemination of both the RF frequency (e.g., 5, 10, or 100 MHz) and time (pulse per second) signals using an actively tapped fiber-optic link with electronic stabilization of the propagation delay. In principle several nodes for accessing the time/frequency signals may be added without the degradation of the dissemination in the main link. We are discussing the algorithm of determining the propagation delay from the local end of the link to the access node that is required for calibration of the time dissemination. Performed analysis shows that the uncertainty of the time calibration at the access node may in practice be dominated by the dependence of the propagation delay of the receivers on impinging optical powers and is only weakly affected by the distance between the local and access modules. The uncertainty is, however, still low, being only about two times higher compared with the calibration uncertainty of the main link. Experimental results performed on several spooled fibers show that the accuracy of described calibration procedures, expressed as a difference from the results of direct measurement, is not worse than 35 ps.
Keywords :
optical fibre communication; optical links; optical receivers; RF frequency dissemination; access modules; access node; actively tapped fiber-optic link; delay-stabilized fiber optic links; electronic stabilization; frequency 10 MHz; frequency 100 MHz; frequency 5 MHz; multipoint joint time dissemination; optical powers; propagation delay; receivers; spooled fibers; time calibration uncertainty; time signals; Calibration; Delays; Optical fibers; Optical receivers; Propagation delay; Uncertainty;
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
DOI :
10.1109/TUFFC.2014.006773