Title :
Long-Term PMD Characterization of a Metropolitan G.652 Fiber Plant
Author :
Poggiolini, Pierluigi ; Nespola, Antonino ; Abrate, Silvio ; Ferrero, Valter ; Lezzi, C.
Author_Institution :
Dipt. di Elettronica, Politecnico di Torino
Abstract :
Using the Jones matrix eigenanalysis method, the differential group delay (DGD) behavior of a metropolitan G.652 buried operational cable plant of a major Italian telecom operator in the city of Torino was characterized. The measurement campaign lasted 73 consecutive days. An extremely stable DGD behavior was found, despite the fact that the cables run across a very densely built city environment. On the other hand, it was also found that routine maintenance on the infrastructure, although indirect and nondisruptive, repeatedly altered this picture. Based on these results, it is argued that the recently introduced "hinge" model describes the plant DGD statistical behavior better than the traditional description. This argument is also supported by the close fit that was obtained with a theoretical hinge-model DGD probability density function of the measured DGD data histogram. It is also argued that in this kind of scenario fast adaptive compensation is most likely the only realistic solution for avoiding sudden performance degradation or out-of-service
Keywords :
eigenvalues and eigenfunctions; matrix algebra; metropolitan area networks; optical cables; optical fibre dispersion; optical fibre networks; optical fibre polarisation; optical fibre testing; statistical analysis; Italian telecom operator; Jones matrix eigenanalysis; adaptive compensation; buried operational cable plant; differential group delay; differential group delay data histogram; hinge model; long-term polarization mode dispersion characterization; metropolitan G.652 fiber plant; probability density function; routine maintenance; statistical behavior; Cities and towns; Communication cables; Delay; Density measurement; Fasteners; Histograms; Maintenance; Optical fiber cables; Probability density function; Telecommunications; Differential group delay (DGD); fiber cable plant; hinge model; metropolitan networks; optical communications; optical fiber polarization; polarization mode dispersion (PMD);
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2006.884229