Title :
A Feasibility Analysis of Power Awareness in Commodity-Based High-Performance Clusters
Author :
Hsu, Chung-Hsing ; Feng, Wu-chun
Author_Institution :
Comput. & Computational Sci. Div., Los Alamos Nat. Lab.
Abstract :
We present a feasibility study of a power-reduction scheme that reduces the thermal power of processors by lowering frequency and voltage in the context of high-performance computing. The study revolves around a 16-processor Opteron-based Beowulf cluster, configured as four nodes of quad-processors, and shows that one can easily reduce a significant amount of CPU and system power dissipation and its associated energy costs while still maintaining high performance. Specifically, our study shows that a 5% performance slowdown can be traded off for an average of 19% system energy savings and 24% system power reduction. These preliminary empirical results, via real measurements, are encouraging because hardware failures often occur when the cluster is running hot, i.e, when the workload is heavy, and the new power-reduction scheme can effectively reduce a cluster´s power demands during these busy periods
Keywords :
microprocessor chips; multiprocessing systems; power aware computing; Opteron-based Beowulf cluster; commodity-based high-performance clusters; feasibility analysis; power awareness; power-reduction; Cooling; Costs; Dynamic voltage scaling; Energy consumption; Frequency; Laboratories; Power demand; Software performance; Supercomputers; Temperature;
Conference_Titel :
Cluster Computing, 2005. IEEE International
Conference_Location :
Burlington, MA
Print_ISBN :
0-7803-9486-0
Electronic_ISBN :
1552-5244
DOI :
10.1109/CLUSTR.2005.347063