DocumentCode :
1498
Title :
Control for Suppression of Channel Power Excursions in ROADM-Based WDM Chain Networks
Author :
Zheng Wang ; Tsai, Jui-che ; Yan Pan ; Kilper, D. ; Pavel, Lacra
Author_Institution :
Edward S. Rogers Dept. of Electr. & Comput. Eng., Univ. of Toronto, Toronto, ON, Canada
Volume :
32
Issue :
2
fYear :
2014
fDate :
Jan.15, 2014
Firstpage :
293
Lastpage :
302
Abstract :
This paper addresses the problem of reducing power excursions in amplified wavelength division multiplexed networks with reconfigurable optical add-drop multiplexers (ROADM) and wavelength selective switches (WSS). In dynamic network loading scenarios, conventional WSS control leads to transient power excursions across the chain. Two WSS control strategies are considered: an integral-control and a modified integral-coordinated control for tracking. For both algorithms, convergence at an isolated node is shown to depend on the optical amplifier nonlinear gain coupling quantified by its Lipschitz constant. In a chain network with independently controlled ROADM nodes, the modified WSS control effectively decouples the nodes and reduces WSS transient power excursions across the chain. The bounds on these reductions are quantified analytically with respect to the L2 norm, by applying Lyapunov analysis techniques for the interconnected chain system. Numerical results that verify and compare the two WSS control strategies are provided by implementation on a Transparent Optical Mesh (ATOM) platform for two realistic dynamic network loading scenarios.
Keywords :
Lyapunov methods; multiplexing equipment; nonlinear control systems; optical communication; wavelength division multiplexing; ATOM; Lipschitz constant; Lyapunov analysis; ROADM based WDM chain networks; WSS control; WSS transient power excursions; channel power excursions; dynamic network loading; integral coordinated control; interconnected chain system; optical amplifier nonlinear gain coupling; reconfigurable optical add-drop multiplexers; transparent optical mesh; wavelength division multiplexed networks; wavelength selective switches; Couplings; Erbium-doped fiber amplifiers; Gain; Gain control; Transient analysis; WDM networks; Interconnected systems; nonlinear Lyapunov techniques; optical communications; power excursions; wavelength selective switch;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2013.2293065
Filename :
6675833
Link To Document :
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