DocumentCode :
1478328
Title :
Multisize Sliding Window in Workload Estimation for Dynamic Power Management
Author :
Luiz, Saulo O D ; Perkusich, Angelo ; Lima, A.M.N.
Author_Institution :
Colegiado de Eng. da Comput., Univ. Fed. do Vale do Sao Francisco, Juazeiro, Brazil
Volume :
59
Issue :
12
fYear :
2010
Firstpage :
1625
Lastpage :
1639
Abstract :
Energy efficiency has become one of the key challenges for a large class of electronic systems. Longer time between battery recharges is highly desirable for battery-powered devices such as mobile phones, digital cameras, Internet tablets, and electronic organizers. Energy efficiency is also important for electronic systems powered from the electric grid since it may reduce power consumption and the cooling requirements. Power savings are possible because electronic systems generally have an idle state, when, for example, the processor can run in a low-power state. Thus, the correct estimation of the workload model plays an essential role in the decision of which and when a power state transition should be performed by the electronic system. This paper introduces a multisize sliding window workload estimation technique for dynamic power management (DPM) in nonstationary environments. This technique reduces both the effects of identification delay and sampling error present in the previous fixed-size sliding window approach. The system is modeled by discrete-time Markov chains and the model offers a rigorous mathematical formulation of the problem and allows one to obtain an excellent trade-off between performance and power consumption.
Keywords :
Markov processes; power aware computing; discrete-time Markov chain; dynamic power management; electric grid; energy efficiency; multisize sliding window; workload estimation; Batteries; Digital cameras; Energy consumption; Energy efficiency; Energy management; Internet; Mathematical model; Mobile handsets; Power system management; Power system modeling; Markov models; Power management; energy-aware systems; estimation.; workload model;
fLanguage :
English
Journal_Title :
Computers, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9340
Type :
jour
DOI :
10.1109/TC.2010.90
Filename :
5453349
Link To Document :
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