Title :
Virtual Slice Assignment in Large-Scale Cloud Interconnects
Author :
Kim-Khoa Nguyen ; Cheriet, Mohamed ; Lemieux, Yves
Author_Institution :
Ecole de Technol. Super., Univ. of Quebec, Montreal, QC, Canada
Abstract :
Software-defined networking is an emerging method for providing flexible and scalable network connectivity in both intra- and inter-datacenter interconnects with regard to various requirements, including traffic-awareness, quality of service, energy efficiency, and renewable-power intermittency. This article investigates issues and solutions for the software-defined planning of a virtual slice that involves multiple virtual machines with interdependent constraints spanning a network of distributed data-centers. A flexible and optimized virtual-slice assignment that considers server consolidation and multipath forwarding can address large-scale cloud computing services. Simulations on large-scale testbeds, such as the GreenStar Network and the Green Telco Cloud, showed that the proposed model achieves good performance in terms of flexibility and energy efficiency.
Keywords :
Internet; cloud computing; computer centres; energy conservation; quality of service; telecommunication network planning; telecommunication power management; telecommunication traffic; virtual machines; GreenStar network; Internet; distributed data-center network; energy efficiency; flexible network connectivity; green Telco cloud; inter-data center interconnects; interdependent constraints; intra-data center interconnects; large-scale cloud computing services; large-scale cloud interconnects; large-scale testbeds; multipath forwarding; multiple virtual machines; quality of service; renewable-power intermittency; scalable network connectivity; server consolidation; software-defined networking; software-defined planning; traffic-awareness; virtual slice assignment; Cloud computing; Computer architecture; Green products; Optical switches; Protocols; Servers; Web-scale cloud; cloud computing; datacenter; software-defined networking; virtual slice assignment;
Journal_Title :
Internet Computing, IEEE
DOI :
10.1109/MIC.2014.42