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Energy-efficient Scheduling for Heterogeneous Servers in the Dark Silicon Era

abstract: Driven by stringent power and thermal constraints, heterogeneous multi-core processors, such as the ARM big-LITTLE architecture, are becoming increasingly popular. In this thesis, the use of low-power heterogeneous multi-cores as Microservers using web search as a motivational application is addressed. In particular, I propose a new family of scheduling policies for heterogeneous microservers that assign incoming search queries to available cores so as to optimize for performance metrics such as mean response time and service level agreements, while guaranteeing thermally-safe operation. Thorough experimental evaluations on a big-LITTLE platform demonstrate, on an heterogeneous eight-core Samsung Exynos 5422 MpSoC, with four big and little cores each, that naive performance oriented scheduling policies quickly result in thermal instability, while the proposed policies not only reduce peak temperature but also achieve 4.8x reduction in processing time and 5.6x increase in energy efficiency compared to baseline scheduling policies. / Dissertation/Thesis / Masters Thesis Electrical Engineering 2015

Identiferoai:union.ndltd.org:asu.edu/item:29678
Date January 2015
ContributorsJain, Sankalp (Author), Ogras, Umit Y. (Advisor), Garg, Siddharth (Committee member), Chakrabarti, Chaitali (Committee member), Arizona State University (Publisher)
Source SetsArizona State University
LanguageEnglish
Detected LanguageEnglish
TypeMasters Thesis
Format49 pages
Rightshttp://rightsstatements.org/vocab/InC/1.0/, All Rights Reserved

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