Title :
Minimum cost flow based R&WA algorithm for dispersion and OSNR limited all-optical networks
Author :
Gurzi, Pasquale ; Steenhaut, Kris ; Nowé, Ann
Author_Institution :
Comput. Sci. Dept., Vrije Univ. Brussel, Brussels, Belgium
Abstract :
In transparent optical networks, the signal is directly switched in the optical domain without o-e-o regeneration. When considering high bit rate transmissions, uncompensated Chromatic Dispersion (CD) and Amplified Spontaneous Emission (ASE) noise accumulate along the fibers causing inter symbol interference and OSNR degradation. As a result, several connection requests are blocked for the low signal quality. We present a new dynamic Impairment Aware (IA)-RWA algorithm to reduce the impact of ASE noise and CD on the network blocking probability. Unlike other Impairment-Aware RWA algorithms, which normally separate the routing phase from the wavelength assignment, our approach uses a layered graph representation to solve the two subproblems simultaneously. Instead of using a shortest-path routing we run a minimum cost flow computation to find the maximum number of disjoint paths at the lower cost in the network. Finally, we select one of the paths considering the CD and BER requirements. We prove the effectiveness of our approach through extensive simulations and comparisons with other IA-RWA strategies.
Keywords :
error statistics; intersymbol interference; optical fibre networks; probability; superradiance; telecommunication network routing; wavelength assignment; BER requirement; OSNR degradation; amplified spontaneous emission noise; bit rate transmission; chromatic dispersion; impairment aware-RWA algorithm; minimum cost flow computation; network blocking probability; optical domain; optical network; routing phase; signal quality; wavelength assignment; Bit error rate; Chromatic dispersion; Optical noise; Routing; Signal to noise ratio; Wavelength assignment;
Conference_Titel :
Optical Network Design and Modeling (ONDM), 2011 15th International Conference on
Conference_Location :
Bologna
Print_ISBN :
978-1-4244-9596-2
Electronic_ISBN :
978-3-901882-42-5