Title :
A SDN-based network architecture for cloud resiliency
Author :
Fressancourt, Antoine ; Gagnaire, Maurice
Author_Institution :
Worldline R&D, Paris, France
Abstract :
In spite of their commercial success, Cloud services are still subject to two major weak points: data security and infrastructure resiliency. In this paper, we propose an original Cloud network architecture aiming at improving the resiliency of Cloud network infrastructures interconnecting remote data centers. The main originality of this architecture consists in exploiting the principles of Software Defined Networking (SDN) in order to adapt the rerouting strategies in case of network failure according to a set of requirements. In existing Cloud networks configurations, network recovery after a fiber cut is achieved by means of the usage of redundant bandwidth capacity preplanned through backup links. Such an approach has two drawbacks. First, it induces at a large scale a non-negligible additional cost for the Cloud Service Providers (CSP). Second, the pre-computation of the rerouting strategy may not be suited to the specific quality of service requirements of the various data flows that were transiting on the failing link. To prevent these two drawbacks, we propose that CSPs deploy their services in several redundant data centers and make sure that those data centers are properly interconnected via the Internet. For that purpose, we propose that a CSP may use the services of multiple (typically two) Internet Service Providers to interconnect its data centers via the Internet. In practice, we propose that a set of “routing inflection points” may form an overlay network exploiting a specific routing strategy. We propose that this overlay is coordinated by a Software Defined Networking-based centralized controller. Thus, such a CSP may choose the network path between two data centers the most suited to the underlying traffic QoS requirement. The proposed approach enables this CSP a certain independency from its network providers. In this paper, we present this new Cloud architecture. We outline how our approach mixes concepts taken from both SDN an- Segment Routing. Unlike the protection techniques used by existing CSPs, we explain how this approach can be used to implement fast rerouting strategy for inter-data center data exchanges.
Keywords :
cloud computing; computer network security; quality of service; software defined networking; telecommunication network routing; telecommunication traffic; CSP; Internet service providers; SDN based network architecture; cloud network architecture; cloud network infrastructures; cloud networks configurations; cloud resiliency; cloud service providers; cloud services; data centers; data security; fiber cut; network failure; remote data centers; rerouting strategy; routing strategy; software defined networking; traffic QoS requirement; Computer architecture; Internet; Multiprotocol label switching; Peer-to-peer computing; Routing; Routing protocols; Servers; Overlay; Resiliency; Segment Routing; Software-Defined Networks;
Conference_Titel :
Consumer Communications and Networking Conference (CCNC), 2015 12th Annual IEEE
Conference_Location :
Las Vegas, NV
Print_ISBN :
978-1-4799-6389-8
DOI :
10.1109/CCNC.2015.7158022