DocumentCode :
2009293
Title :
An Efficient Power-Aware Resource Scheduling Strategy in Virtualized Datacenters
Author :
Yazhou Zu ; Tian Huang ; Yongxin Zhu
Author_Institution :
Sch. of Microelectron., Shanghai Jiao Tong Univ., Shanghai, China
fYear :
2013
fDate :
15-18 Dec. 2013
Firstpage :
110
Lastpage :
117
Abstract :
In the era of cloud computing, data centers are well-known to be bounded by the power wall issue. This issue lowers the profit of service providers and obstructs the expansions of data center´s scale. As virtual machine´s behavior was not explored sufficiently in classic data center´s power-saving strategies, in this paper we address the power consumption issue in the setting of a virtualized data center. We propose an efficient power-aware resource scheduling strategy that reduces data center´s power consumption effectively based on VM live migration which is a key technical feature of cloud computing. Our scheduling algorithm leverages the Xen platform and consolidates VM workloads periodically to reduce the number of running servers. To satisfy each VM´s service level agreements, our strategy keeps adjusting VM placements between scheduling rounds. We developed a power-aware data center simulator to test our algorithm. The simulator runs in time domain and includes server´s segmented linear power model. We validated our simulator using measured server power trace. Our simulation shows that compared with event-driven schedulers, our strategy improves data center power budget by 35% for random workloads resembling web-requests, and improve data center power budget by 22.7% for workloads exhibiting stable resource requirements like ScaLAPACK.
Keywords :
cloud computing; computer centres; contracts; power aware computing; power consumption; resource allocation; scheduling; virtual machines; virtualisation; ScaLAPACK; VM live migration; VM placements; VM service level agreements; VM workloads; Xen platform; cloud computing; event-driven schedulers; power consumption issue; power wall issue; power-aware data center simulator; power-aware resource scheduling strategy; server power trace; server segmented linear power model; virtualized datacenters; Cloud computing; Computational modeling; Power demand; Scheduling algorithms; Servers; Time-domain analysis; cloud computing; datacenter power consumption; datacenter simulator; resource provisioning; server power model; virtual machine;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Parallel and Distributed Systems (ICPADS), 2013 International Conference on
Conference_Location :
Seoul
ISSN :
1521-9097
Type :
conf
DOI :
10.1109/ICPADS.2013.27
Filename :
6808164
Link To Document :
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