Title :
Performance of WDM networks with photonic switching and resource distribution planning
Author :
Martins, Indayara B. ; Perez-Sanchez, Grethell ; Gallion, Philippe ; Rudge, Felipe ; Moschim, Edson
Author_Institution :
Ecole Nat. Super. des Telecommun., TELECOM Paris Tech, Paris, France
Abstract :
This article evaluates the performance of Wavelength Division Multiplex (WDM) networks considering two different modes of photonic Switching: Optical Packet Switching (OPS) and Optical Circuit Switching (OCS). A resource distribution planning is proposed including wavelength/amplifier allocation to improve the blocking probability and to ensure signal quality. The present study considered the effects of signal attenuation and dispersion in mesh topology networks, and the actual utilization of each network link for the distribution of wavelengths and amplifiers. The physical network parameters considered had average diameter and average distance, as well as ASE noise accumulation and channel cross-talk. In order to evaluate and compare the performance between WDM-OCS and WDM-OPS, the following parameters were analyzed: delay (latency), blocking probability, and effective network-capacity utilization. Results show a reduction of blocking probability with a small increase in latency in both OCS and OPS, but the WDM-OPS combination presents results with very positive impact. Work was carried out with both analytic modeling and computer simulations.
Keywords :
optical crosstalk; optical fibre networks; photonic switching systems; probability; telecommunication network planning; telecommunication network topology; wavelength division multiplexing; ASE noise accumulation; WDM network; WDM networks; WDM-OCS; WDM-OPS; blocking probability; channel cross-talk; computer simulations; mesh topology networks; network-capacity utilization; optical circuit switching; optical packet switching; photonic switching; physical network parameters; resource distribution planning; signal attenuation; signal quality; wavelength division multiplex networks; wavelength-amplifier allocation; Mathematical model; Network topology; Optical fiber networks; Optical fibers; Optical packet switching; Topology; Wavelength division multiplexing; Optical Circuit Switching; Optical Fiber Communications; Optical Packet Switching; Photonic Switching; WDM;
Conference_Titel :
Network and Optical Communications (NOC), 2013 18th European Conference on and Optical Cabling and Infrastructure (OC&i), 2013 8th Conference on
Conference_Location :
Graz
Print_ISBN :
978-1-4673-5821-7
DOI :
10.1109/NOC-OCI.2013.6582896