DocumentCode
267137
Title
Performance Characteristics of an SDN-Enhanced Job Management System for Cluster Systems with Fat-Tree Interconnect
Author
Watashiba, Yasuhiro ; Date, Susumu ; Abe, Hirotake ; Kido, Yoshiyuki ; Ichikawa, Kohei ; Yamanaka, Hiroaki ; Kawai, Eiji ; Shimojo, Shinji ; Takemura, Haruo
Author_Institution
Osaka Univ., Suita, Japan
fYear
2014
fDate
15-18 Dec. 2014
Firstpage
781
Lastpage
786
Abstract
In the era of cloud computing, data centers that accommodate a series of user-requested jobs with a diversity of resource usage pattern need to have the capability of efficiently distributing resources to each user job, based on individual resource usage patterns. In particular, for high-performance computing as a cloud service which allows many users to benefit from a large-scale computing system, a new framework for resource management that treats not only the CPU resources, but also the network resources in the data center is essential. In this paper, an SDN-enhanced JMS that efficiently handles both network and CPU resources and as a result accelerates the execution time of user jobs is introduced as a building block technology for such a HPC cloud. Our evaluation shows that the SDN-enhanced JMS efficiently leverages the fat-tree interconnect of cluster systems running behind the cloud to suppress the collision of communications generated by different jobs.
Keywords
LAN interconnection; cloud computing; computer centres; parallel processing; resource allocation; software defined networking; workstation clusters; CPU resources; HPC cloud; SDN-enhanced JMS; SDN-enhanced job management system; cloud computing; cloud service; cluster systems; data centers; fat-tree interconnect; high-performance computing; large-scale computing system; network resources; performance characteristics; resource management; resource usage pattern; user-requested jobs; Bandwidth; Cloud computing; Network topology; Resource management; Switches; Topology; Cluster System with Fat-Tree Interconnect; Job Management System; Open Flow; Software Defined Networking;
fLanguage
English
Publisher
ieee
Conference_Titel
Cloud Computing Technology and Science (CloudCom), 2014 IEEE 6th International Conference on
Conference_Location
Singapore
Type
conf
DOI
10.1109/CloudCom.2014.82
Filename
7037761
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