Maximizing Power Efficiency with Asymmetric Multicore Systems.

The article discusses the development of software that takes advantage of the design of asymmetric multicore processors (AMPs). The potential for AMPs to conserve large amounts of electricity due to their design, which consists of cores using the same instruction set architecture (ISA) but with diff...

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Detalles Bibliográficos
Publicado en:Communications of the ACM Vol. 52; no. 12; pp. 48 - 58
Autores principales: FEDOROVA, ALEXANDRA, SAEZ, JUAN CARLOS, SHELEPOV, DANIEL, PRIETO, MANUEL
Formato: Artículo
Publicado: Association for Computing Machinery Dec2009
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Acceso en línea:Ver este registro en EBSCOhost
Descripción
Sumario:The article discusses the development of software that takes advantage of the design of asymmetric multicore processors (AMPs). The potential for AMPs to conserve large amounts of electricity due to their design, which consists of cores using the same instruction set architecture (ISA) but with differing performance and power characteristics, is discussed. The inclusion of several powerful, high-power-consumption cores along with a large number of slower, low-power-consumption cores in the design of an AMP is mentioned, noting that processor-intensive, single-threaded, sequential tasks are best served by the more powerful cores while parallel applications run most efficiently on the large number of simpler cores.