Title :
High-performance routing for hose-based VPNs in multi-domain backbone networks
Author :
Chen, Xiuzhong ; De Leenheer, Marc ; Vadrevu, Chaitanya S K ; Shi, Lei ; Zhang, Jie ; Mukherjee, Biswanath
Author_Institution :
Key Lab. of Inf. Photonics & Opt. Commun., Beijing Univ. of Posts &Telecommun., Beijing, China
Abstract :
By utilizing Layer-1 Virtual Private Networks (L1VPN), a single physical network, e.g., optical backbone networks, can support multiple virtual networks, which is the basic infrastructure for cloud computing and other enterprise networks. The L1VPN hose model is an elegant and flexible way to specify the customers´ bandwidth requirements, by defining the total incoming and outgoing demand for each endpoint. Furthermore, multi-domain physical infrastructures are common in L1VPNs, since these are usually deployed on a global scale. Thus, high-performance Routing for Multi-domain VPN Provisioning (RMVP) for the hose model is an important problem to efficiently support a global virtual infrastructure. In this paper, we formulate the RMVP problem as a Mixed Integer Linear Program (MILP). Also, we propose a Top-Down Routing (TDR) strategy to compute the optimal routing for the hose-model L1VPN in multi-domain backbone networks. Results indicate that TDR approaches the minimum routing cost when compared to ideal case of single-domain routing.
Keywords :
integer programming; linear programming; telecommunication network routing; virtual private networks; MILP; RMVP problem; bandwidth requirements; cloud computing; high-performance routing; hose-based VPN; layer-1 virtual private networks; mixed integer linear program; multidomain backbone networks; multidomain physical infrastructures; multiple virtual networks; single-domain routing; top-down routing; Bandwidth; Computational modeling; Hoses; Network topology; Routing; Topology; Virtual private networks; High-performance routing; hose model; layer-1 virtual private networks; multi-domain; virtual infrastructure;
Conference_Titel :
High Performance Switching and Routing (HPSR), 2011 IEEE 12th International Conference on
Conference_Location :
Cartagena
Print_ISBN :
978-1-4244-8454-6
Electronic_ISBN :
978-1-4244-8455-3
DOI :
10.1109/HPSR.2011.5986004