DocumentCode
3091718
Title
Early Design Phase Power Performance Trade-Offs Using In-Situ Macro Models
Author
Thangaraj, Charles ; Chen, Tom
Author_Institution
Colorado State Univ., Boulder
fYear
2008
fDate
23-25 Jan. 2008
Firstpage
539
Lastpage
544
Abstract
Early phase space exploration with a focus on power performance tradeoffs has been shown to enable faster design convergence. Tightly coupled physical design considerations and system level models are needed to guarantee time-to- market. This paper describes a methodology for early design space exploration. A Pareto-front analysis using the proposed methodology was applied to an industrial design to perform design space exploration. The obtained low power design solution improved the designers best solution by additionally reducing power by 6% with 2% performance impact. The optimal trade-off solution improved designers best by additionally trading off 1.7% and 2.8% performance for power savings of 8.5% and 7.6% respectively. The absolute amount achieved here is not as important as knowing what the desired design options should be for each functional block in the design very early in the design phase.
Keywords
Pareto analysis; space research; Pareto-front analysis; in-situ macro models; phase power performance trade-offs; space exploration; time-to-market; Application software; Coupling circuits; Design optimization; Electronic equipment testing; Energy consumption; Pareto analysis; Performance analysis; Power system modeling; Space exploration; Space technology; Power-performance trade-off; What-if analysis; pareto-front;
fLanguage
English
Publisher
ieee
Conference_Titel
Electronic Design, Test and Applications, 2008. DELTA 2008. 4th IEEE International Symposium on
Conference_Location
Hong Kong
Print_ISBN
978-0-7695-3110-6
Type
conf
DOI
10.1109/DELTA.2008.42
Filename
4459609
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