DocumentCode
3209919
Title
Sensor-Based Fast Thermal Evaluation Model For Energy Efficient High-Performance Datacenters
Author
Tang, Qinghui ; Mukherjee, Tridib ; Gupta, Sandeep KS ; Cayton, Phil
Author_Institution
Arizona State Univ., Tempe
fYear
2006
fDate
Oct. 15 2006-Dec. 18 2006
Firstpage
203
Lastpage
208
Abstract
In this work, we propose an abstract heat flow model which uses temperature information from onboard and ambient sensors, characterizes hot air recirculation based on these information, and accelerates the thermal evaluation process for high performance datacenters. This is critical to minimize energy costs, optimize computing resources, and maximize computation capability of the datacenters. Given a workload and thermal profile, obtained from various distributed sensors, we predict the resulting temperature distribution in a fast and accurate manner taking into account the recirculation characterization of a datacenter topology. Simulation results confirm our hypothesis that heat recirculation can be characterized as cross interference in our abstract heat flow model. Moreover, fast thermal evaluation based on cross interference can be used in online thermal management to predict temperature distribution in real-time.
Keywords
computer centres; distributed sensors; power aware computing; abstract heat flow model; cross interference; distributed sensor; energy efficient high-performance datacenter; hot air recirculation; onboard-ambient sensor; online thermal management; sensor-based fast thermal evaluation model; simulation; temperature distribution; Acceleration; Cost function; Energy efficiency; Interference; Sensor phenomena and characterization; Temperature distribution; Temperature sensors; Thermal management; Thermal sensors; Topology;
fLanguage
English
Publisher
ieee
Conference_Titel
Intelligent Sensing and Information Processing, 2006. ICISIP 2006. Fourth International Conference on
Conference_Location
Bangalore
Print_ISBN
1-4244-0612-9
Electronic_ISBN
1-4244-0612-9
Type
conf
DOI
10.1109/ICISIP.2006.4286097
Filename
4286097
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