Title :
An Enhanced Mathematical Model for Performance Evaluation of Optical Burst Switched Networks
Author :
Morsy, Mohamed H S ; Sowailem, Mohamad Y S ; Shalaby, Hossam M H
Abstract :
An enhanced mathematical model is introduced to study and evaluate the performance of a core node in an optical burst switched network. In the proposed model, the exact Poisson traffic arrivals to the OBS node is approximated by assuming that the maximum allowed number of arrivals to the OBS node, in a given time slot, is two (instead of infinity). A detailed state diagram is outlined to illustrate the problem, and then a mathematical model based on the equilibrium point analysis (EPA) technique is presented. The steady-state system throughput is derived from the model which is built in the absence of wavelength conversion capability. Our proposed model is aided by a simulation work which studies the performance of an OBS core node under the assumption of Poisson traffic arrivals (the exact case) and calculates the steady- state system throughput. The results obtained from the proposed mathematical model are consistent with that of simulation when assuming Poisson traffic arrivals and this consistency holds for a wide range of traffic load.
Keywords :
Poisson distribution; optical burst switching; optical fibre networks; optical wavelength conversion; performance evaluation; telecommunication traffic; OBS core node; OBS node; Poisson traffic arrivals; enhanced mathematical model; equilibrium point analysis technique; optical burst switched networks; performance evaluation; state diagram; steady-state system throughput; wavelength conversion capability; Bandwidth; Mathematical model; Optical fiber networks; Optical network units; Optical packet switching; Optical wavelength conversion; Protocols; Student members; Telecommunication traffic; Traffic control;
Conference_Titel :
Global Telecommunications Conference, 2008. IEEE GLOBECOM 2008. IEEE
Conference_Location :
New Orleans, LO
Print_ISBN :
978-1-4244-2324-8
DOI :
10.1109/GLOCOM.2008.ECP.528