Title :
Virtual infrastructure embedding over software-defined flex-grid optical networks
Author :
Zilong Ye ; Patel, Ankitkumar ; Ji, Philip ; Chunming Qiao ; Ting Wang
Author_Institution :
NEC Labs. America, Inc., Princeton, NJ, USA
Abstract :
Software-Defined Networking (SDN) enables efficient and scalable network virtualization. Infrastructure resources, such as computing and networking resources, can be abstracted and outsourced as a service using virtualization technology. These SDN features can be extended to the optical transport networks to enable high capacity, low cost, and long reach transport networks. In this paper, we introduce an architecture for Software-Defined Optical Network (SDON), and study the virtual infrastructure embedding (VIE) problem over SDON with the objective of minimizing the blocking probability of VIE requests. We propose two novel heuristic algorithms, namely Compute followed by Network Load Balance (CNLB) and Network followed by Compute Load Balance (NCLB). Specifically, NCLB is the first ever attempt to solve the VIE problem by allocating the networking resource first followed by provisioning the computing resource. We compare these two algorithms with the Shortest-Path Based Embedding (SPBE) algorithm. The simulation results show that both CNLB and NCLB outperform SPBE in terms of minimizing the request blocking probability, and NCLB achieves the best performance.
Keywords :
cloud computing; heuristic programming; optical fibre networks; probability; resource allocation; telecommunication computing; virtualisation; CNLB; NCLB; SDON; SPBE algorithm; VIE problem; blocking probability; compute followed by network load balance; computing resources; heuristic algorithms; network followed by compute load balance; network virtualization; networking resources; optical transport networks; shortest-path based embedding algorithm; software-defined flex-grid optical networks; software-defined networking; virtual infrastructure embedding; virtualization technology; Bandwidth; Computer architecture; Conferences; Heuristic algorithms; Modulation; Optical fiber networks; Optics; Flex-grid Optical Networks; Software-Defined Networking (SDN); Virtual Infrastructure Embedding;
Conference_Titel :
Globecom Workshops (GC Wkshps), 2013 IEEE
Conference_Location :
Atlanta, GA
DOI :
10.1109/GLOCOMW.2013.6825157