DocumentCode :
606802
Title :
Planning and optimization of highly resilient multi-ring ERP-based mesh networks
Author :
Nurujjaman, Mohammad ; Sebbah, Samir ; Assi, Chadi
Author_Institution :
Concordia Univ., Montreal, QC, Canada
fYear :
2013
fDate :
4-7 March 2013
Firstpage :
203
Lastpage :
209
Abstract :
Ethernet Ring Protection (ERP)´s ability to provide sub-50 ms failover time enhances the candidacy of Carrier Ethernet over conventional SONET/SDH as the technology of choice for packet transport networks. To ensure higher service availability, the logical ERP should be carefully designed by considering concurrent dual link failures. In this paper, we categorize the network service outages subject to concurrent dual link failures. We address the problem of optimal capacity provisioning while providing higher service availability and formulate this as an joint optimization problem. We show that higher service availability can be achieved by proper RPL (Ring Protection Link) placement and ring hierarchy selection with the objective of maximizing the network flow under any dual link failure scenario. Numerical evaluations as well as comparisons are carried out which show the effectiveness (in terms allocated capacity and service outages) of the presented design approach.
Keywords :
local area networks; optimisation; packet radio networks; protection; telecommunication network planning; telecommunication security; Ethernet ring protection; RPL; RPL placement; SONET-SDH; allocated capacity; concurrent dual link failures; dual link failure scenario; highly resilient multiring ERP-based mesh networks optimization; highly resilient multiring ERP-based mesh networks planning; joint optimization problem; network flow; numerical evaluations; optimal capacity provisioning; packet transport networks; ring hierarchy selection; ring protection link; service outages; Capacity planning; Mesh networks; Network topology; Optimization; Ports (Computers); SONET; Topology; Carrier Ethernet; Dual failures; ERP; Flow maximization; Network survivability; Optimization;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Design of Reliable Communication Networks (DRCN), 2013 9th International Conference on the
Conference_Location :
Budapest
Print_ISBN :
978-1-4799-0049-7
Type :
conf
Filename :
6529862
Link To Document :
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