DocumentCode :
623670
Title :
On arbitrating the power-performance tradeoff in SaaS clouds
Author :
Zhi Zhou ; Fangming Liu ; Hai Jin ; Bo Li ; Baochun Li ; Hongbo Jiang
Author_Institution :
Key Lab. of Services Comput. Technol. & Syst., Huazhong Univ. of Sci. & Technol., Wuhan, China
fYear :
2013
fDate :
14-19 April 2013
Firstpage :
872
Lastpage :
880
Abstract :
In this paper, we present an analytical framework for characterizing and optimizing the power-performance tradeoff in Software-as-a-Service (SaaS) cloud platforms. Our objectives are two-fold: (1) We maximize the operating profit when serving heterogeneous SaaS applications with unpredictable user requests, and (2) we minimize the power consumption when processing user requests. To achieve these objectives, we take advantage of Lyapunov Optimization techniques to design and analyze an optimal control framework to make online decisions on request admission control, routing, and virtual machine (VMs) scheduling. In particular, our control framework can be flexibly extended to incorporate various design choices and practical requirements of a data-center in the cloud, such as enforcing a certain power budget for improving the performance (dollar) per watt. Our mathematical analyses and simulations have demonstrated both the optimality (in terms of a cost-effective power-performance tradeoff) and system stability (in terms of robustness and adaptivity to time-varying and bursty user requests) achieved by our proposed control framework.
Keywords :
Lyapunov methods; cloud computing; computer centres; optimal control; optimisation; scheduling; telecommunication congestion control; telecommunication network routing; virtual machines; Lyapunov optimization techniques; SaaS cloud platforms; datacenter; heterogeneous SaaS applications; mathematical analyses; online decision making; operating profit; optimal control framework; power budget; power consumption minimization; power-performance tradeoff; request admission control; routing; software-as-a-service cloud platforms; system stability; unpredictable user requests; virtual machine scheduling; Admission control; Computational modeling; Control systems; Power demand; Routing; Servers; Throughput;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
INFOCOM, 2013 Proceedings IEEE
Conference_Location :
Turin
ISSN :
0743-166X
Print_ISBN :
978-1-4673-5944-3
Type :
conf
DOI :
10.1109/INFCOM.2013.6566875
Filename :
6566875
Link To Document :
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