DocumentCode :
1166215
Title :
Reflections and Multiple Rayleigh Backscattering in WDM Single-Fiber Loopback Access Networks
Author :
Arellano, Cristina ; Langer, Klau-Dieter ; Prat, Josep
Author_Institution :
VPIphotonics, Berlin
Volume :
27
Issue :
1
fYear :
2009
Firstpage :
12
Lastpage :
18
Abstract :
The optical gain of reflective optical network units (ONUs) may produce a critical amplifying feedback on the single-fiber transmission impairments. In this paper, its influence on the passive optical networks transmission with reflective-ONU is theoretically analyzed and experimentally confirmed. Analytical expressions for the optical crosstalk-to-signal ratio and the Q-parameter in presence of Rayleigh backscattering, reflection interferences and ASE noise are given. As a resulting design guideline, the ONU gain should be adjusted to about 3 dB below the total link loss; in addition, component return loss at the drop section must be higher than 30 dB. Experimental results with two basic types of reflective-ONUs, namely a loop structure formed by a Mach-Zehnder modulator and an optical amplifier, and another one employing a reflective-SOA, are in agreement with the theoretical approach.
Keywords :
Rayleigh scattering; optical crosstalk; optical fibre losses; optical fibre subscriber loops; optical noise; semiconductor optical amplifiers; superradiance; wavelength division multiplexing; ASE noise; Mach-Zehnder modulator; Q-parameter; WDM single-fiber loopback access network; multiple Rayleigh backscattering; optical amplifier; optical crosstalk-to-signal ratio; optical gain; passive optical network transmission; reflection interference; reflective optical network unit; reflective-SOA; single-fiber transmission impairment; Backscatter; Crosstalk; Optical feedback; Optical losses; Optical network units; Optical noise; Optical reflection; Passive optical networks; Stimulated emission; Wavelength division multiplexing; Optical fiber interference; Rayleigh scattering; passive optical network; semiconductor optical amplifier; wavelength division multiplexing;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2008.929411
Filename :
4785402
Link To Document :
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