DocumentCode :
3574145
Title :
An approximate algorithm of controller configuration in multi-domain SDN architecture
Author :
Gang Wang ; Zhifeng Zhao ; Jialiang Peng ; Rongpeng Li ; Honggang Zhang
Author_Institution :
York-Zhejiang Lab. for Cognitive Radio & Green Commun., Zhejiang Univ., Hangzhou, China
fYear :
2014
Firstpage :
601
Lastpage :
605
Abstract :
Software Defined Networking (SDN), which decouples the control plane from the data plane and assembles the control ability of switches to a centralized controller, has drawn great attention recently and shown lots of merits. In large networks, however, if only one omniscient SDN controller is deployed, there will be high capacity demand and long delay due to the significant amount of control information, which are harmful to the networks scalability and reliability. Intuitively, some researchers have proposed to divide the whole networks into multiple domains and try to cooperatively manage the networks by using a group of controllers, none of which is able to monitor the complex networks alone due to capacity constraints, but they do not provide a method to configure the networks efficiently. In this paper, we try to figure out the least number of controllers we need in the above circumstance and address how to configure the network with multiple-domain controllers. For this NP-hard problem, instead of reaching an optimal algorithm, we propose an approximate algorithm called Greedy Sub-Graph Cover Problem algorithm (GSGCP) in a simplified but equivalent multi-domain control model, in which each domain is abstracted to a single node. Simulation results verify that the proposed algorithm configures the networks with an acceptable performance and computation complexity for any given network topology.
Keywords :
computational complexity; greedy algorithms; optimisation; software radio; telecommunication control; telecommunication network topology; GSGCP; NP-hard problem; approximate algorithm; computation complexity; controller configuration; greedy sub-graph cover problem algorithm; multidomain SDN architecture; multidomain control model; multiple-domain controllers; network topology; optimal algorithm; software defined networking; Approximation algorithms; Control systems; Mathematical model; NP-hard problem; Network topology; Simulation; Topology;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Communications and Networking in China (CHINACOM), 2014 9th International Conference on
Type :
conf
DOI :
10.1109/CHINACOM.2014.7054366
Filename :
7054366
Link To Document :
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