DocumentCode :
182138
Title :
Space Shuffle: A Scalable, Flexible, and High-Bandwidth Data Center Network
Author :
Ye Yu ; Chen Qian
fYear :
2014
fDate :
21-24 Oct. 2014
Firstpage :
13
Lastpage :
24
Abstract :
Data center applications require the network to be scalable and bandwidth-rich. Current data center network architectures often use rigid topologies to increase network bandwidth. A major limitation is that they can hardly support incremental network growth. Recent studies propose to use random interconnects to provide growth flexibility. However, routing on a random topology suffers from control and data plane scalability problems, because routing decisions require global information and forwarding state cannot be aggregated. In this paper, we design a novel flexible data center network architecture, Space Shuffle (S2), which applies greedy routing on multiple ring spaces to achieve high-throughput, scalability, and flexibility. The proposed greedy routing protocol of S2 effectively exploits the path diversity of densely connected topologies and enables key-based routing. Extensive experimental studies show that S2 provides high bisectional bandwidth and throughput, near-optimal routing path lengths, extremely small forwarding state, fairness among concurrent data flows, and resiliency to network failures.
Keywords :
computer centres; data communication; diversity reception; greedy algorithms; routing protocols; data flow; data plane scalability problems; flexible data center network architecture; forwarding state; global information; greedy routing; key-based routing; near-optimal routing path lengths; network bandwidth; network failures; path diversity; random topology; routing decisions; space shuffle; Bandwidth; Network topology; Ports (Computers); Routing; Routing protocols; Servers; Topology;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Network Protocols (ICNP), 2014 IEEE 22nd International Conference on
Conference_Location :
Raleigh, NC
Print_ISBN :
978-1-4799-6203-7
Type :
conf
DOI :
10.1109/ICNP.2014.23
Filename :
6980362
Link To Document :
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