DocumentCode :
59050
Title :
EXR: Greening Data Center Network with Software Defined Exclusive Routing
Author :
Dan Li ; Yunfei Shang ; Wu He ; Congjie Chen
Author_Institution :
Comput. Sci. Dept., Tsinghua Univ., Beijing, China
Volume :
64
Issue :
9
fYear :
2015
fDate :
Sept. 1 2015
Firstpage :
2534
Lastpage :
2544
Abstract :
The explosive expansion of data center sizes aggravates the power consumption and carbon footprint, which has restricted the sustainable growth of cloud services and seriously troubled data center operators. In recent years, plenty of advanced data center network architectures have been proposed. They usually employ richly-connected topologies and multi-path routing to provide high network capacity. Unfortunately, they also undergo inefficient network energy usage during the traffic valley time. To address the problem, many energy-aware flow scheduling algorithms are proposed recently, primarily considering how to aggregate traffic by flexibly choosing the routing paths, with flows fairly sharing the link bandwidths. In this paper, we leverage software defined network (SDN) technique and explore a new solution to energy-aware flow scheduling, i.e., scheduling flows in the time dimension and using exclusive routing (EXR) for each flow, i.e., a flow always exclusively utilizes the links of its routing path. The key insight is that exclusive occupation of link resources usually results in higher link utilization in high-radix data center networks, since each flow does not need to compete for the link bandwidths with others. When scheduling the flows, EXR leaves flexibility to operators to define the priorities of flows, e.g., based on flow size, flow deadline, etc. Extensive simulations and testbed experiments both show that EXR can effectively save network energy compared with the regular fair-sharing routing (FSR), and significantly reduce the average flow completion time if assigning higher scheduling priorities to smaller flows.
Keywords :
computer centres; computer networks; energy conservation; green computing; power aware computing; software defined networking; telecommunication network routing; EXR; FSR; SDN technique; carbon footprint; cloud services; data center network architectures; energy-aware flow scheduling algorithms; fair-sharing routing; high-radix data center networks; multipath routing; network capacity; network energy usage; power consumption; richly-connected topologies; scheduling priorities; software defined exclusive routing; software defined network; sustainable growth; time dimension; Bandwidth; Control systems; Energy consumption; Ports (Computers); Power demand; Routing; Servers; Data Center Network; Data center network; Exclusive Routing; Software Defined Networking; exclusive routing; software defined networking;
fLanguage :
English
Journal_Title :
Computers, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9340
Type :
jour
DOI :
10.1109/TC.2014.2375233
Filename :
6967716
Link To Document :
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