DocumentCode :
2364342
Title :
Hyper-BCube: A scalable data center network
Author :
Lin, Dong ; Liu, Yang ; Hamdi, Mounir ; Muppala, Jogesh
Author_Institution :
Dept. of Comput. Sci. & Eng., Hong Kong Univ. of Sci. & Technol., Hong Kong, China
fYear :
2012
fDate :
10-15 June 2012
Firstpage :
2918
Lastpage :
2923
Abstract :
Mega data centers are being built around the world to provide various cloud computing services. As a result, data center networking has recently been a hot research topic in both academia and industry. A fundamental challenge in this research is the design of the data center network that interconnects the massive number of servers, and provides efficient and fault-tolerant routing service to upper-layer applications. In response to this challenge, the research community have begun exploring novel interconnect topologies including Fat-Tree, DCell, and BCube and etc. Understandably, this research is still in its infancy. The proposed solutions either scale too fast (i.e., double exponentially) or too slow, suffer from performance bottlenecks, or can be quite costly in both routing and construction. In this paper, we propose a cost-effective and gracefully scalable data center interconnect termed Hyper-BCube that combines the advantages of both DCell and BCube architectures while avoiding their limitations. We then propose fault-tolerant and routing mechanisms for Hyper-BCube. Finally, we propose a comprehensive benchmarking environment that can be used for accurately and practically evaluating and testing the proposed data center architecture.
Keywords :
Web services; cloud computing; computer centres; fault tolerant computing; telecommunication computing; telecommunication network reliability; telecommunication network routing; telecommunication network topology; Bcube architectures; Dcell architectures; academia; cloud computing services; data center network scalability; fat-tree; fault-tolerant routing service; hyper-Bcube; industry; interconnect topologies; upper-layer applications; Computer architecture; Fault tolerance; Fault tolerant systems; Optical switches; Routing; Servers; Data center; Fault tolerance; Network topology; Throughput;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Communications (ICC), 2012 IEEE International Conference on
Conference_Location :
Ottawa, ON
ISSN :
1550-3607
Print_ISBN :
978-1-4577-2052-9
Electronic_ISBN :
1550-3607
Type :
conf
DOI :
10.1109/ICC.2012.6363759
Filename :
6363759
Link To Document :
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