Title :
Dynamic Performance and Speed Requirement of Polarization Mode Dispersion Compensators
Author :
Xie, Chongjin ; Werner, Dieter ; Haunstein, Herbert F.
Author_Institution :
Lucent Technol. Bell Labs, Holmdel, NJ
Abstract :
To study the dynamic performance of a polarizationmode-dispersion compensator (PMDC), a continuous PMD model and a dynamic PMDC model are presented. The continuous PMD model generates continuous PMD and state of polarization (SOP) variations. The statistics of the SOP variation generated by the continuous PMD model follows the Rayleigh distribution, and the SOP variation amplitude scales with the square root of sampling-time interval. The results are compared with those of a numerical and a commercial polarization scrambler, and the difference of the SOP variation characteristics between the PMD model and the polarization scramblers is explained. The continuous PMD model and the dynamic PMDC model are used to study the dynamic performance and speed requirement of a two-stage PMDC. The speed requirement of the PMDC is quantified in the SOP variation in one PMDC loop cycle. The authors found that when the SOP variation is within 3deg in one PMDC loop cycle, the dynamic PMD and SOP changes virtually does not cause any degradation in the PMDC performance
Keywords :
optical communication equipment; optical fibre communication; optical fibre dispersion; optical fibre polarisation; Rayleigh distribution; polarization mode dispersion compensators; polarization mode dispersion model; polarization scrambler; polarization state; polarization variation statistics; sampling-time interval; Bit rate; Degradation; Delay; Fluctuations; Optical distortion; Optical fiber cables; Optical fiber communication; Optical fiber polarization; Polarization mode dispersion; Statistical distributions; Dynamics; PMD compensators; optical fiber communications; polarization; polarization mode dispersion (PMD);
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2006.883608