DocumentCode :
1783239
Title :
Online Server and Workload Management for Joint Optimization of Electricity Cost and Carbon Footprint Across Data Centers
Author :
Abbasi, Zeinab ; Pore, Madhurima ; Gupta, Sandeep K. S.
Author_Institution :
IMPACT Lab., Arizona State Univ., Tempe, AZ, USA
fYear :
2014
fDate :
19-23 May 2014
Firstpage :
317
Lastpage :
326
Abstract :
Internet data centers, typically distributed across the world in order to provide timely and reliable Internet service, have been increasingly pressurized to reduce their carbon footprint and electricity cost. Particularly, data centers will soon be required to abide by carbon capping polices which impose carbon footprint limits to encourage brown energy conservation. We propose an online algorithm, called OnlineCC, for minimizing the operational cost while satisfying the carbon footprint reduction target of a set of geo-distributed data centers. OnlineCC makes use of Lyapunov optimization technique while operating without long-term future information, making it attractive in the presence of uncertainties associated with data center information e.g., input workload. We prove that OnlineCC achieves a near optimal operational cost (electricity cost) compared to the optimal algorithm with future information, while bounding the potential violation of carbon footprint target, depending on the Lyapunov control parameter, namely V. We also give a heuristic for finding V which significantly shortens the search space to adjust its value. Finally, we perform a trace-based simulation study and a small scale experiment to complement the analysis. The results show that OnlineCC reduces cost by more than 18% compared to a prediction-based online solution while resulting in equal or smaller carbon footprint.
Keywords :
Lyapunov methods; cloud computing; computer centres; energy conservation; green computing; minimisation; power aware computing; search problems; Internet data centers; Internet service; Lyapunov control parameter; Lyapunov optimization; OnlineCC; brown energy conservation; carbon capping polices; carbon footprint optimization; carbon footprint reduction; data center information; electricity cost optimization; electricity cost reduction; geo-distributed data centers; joint optimization; near optimal operational cost; online algorithm; online server management; operational cost minimization; search space reduction; trace-based simulation; workload management; Carbon; Carbon dioxide; Delays; Electricity; Optimization; Power demand; Servers; carbon capping; carbon neutrality; cloud computing; cost saving; data centers; energy sustainability;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Parallel and Distributed Processing Symposium, 2014 IEEE 28th International
Conference_Location :
Phoenix, AZ
ISSN :
1530-2075
Print_ISBN :
978-1-4799-3799-8
Type :
conf
DOI :
10.1109/IPDPS.2014.42
Filename :
6877266
Link To Document :
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