DocumentCode :
3674826
Title :
A Power Consumption Estimation Approach for Embedded Software Design Using Trace Analysis
Author :
Yassine Ben Atitallah;Julien Mottin;Nicolas Hili;Thomas Ducroux;Guillaume Godet-Bar
Author_Institution :
LETI, CEA, Grenoble, France
fYear :
2015
Firstpage :
61
Lastpage :
68
Abstract :
With the explosion of advanced power control knobs such as dynamic voltage frequency scaling, mastering energy constraints in embedded systems is becoming challenging for software developers. Several power estimation techniques have been proposed over the past years, from electrical level to more abstract models such as SystemC/TLM. They offer various tradeoffs between performance and accuracy, but suffer from a number of shortcomings. They are expensive and time-consuming, requiring intricate models of the architecture and finally, fail to be applied from the software developer perspective. In this paper, we propose a lightweight and cost-effective approach suitable for software developers. It relies on trace analysis and high-level modeling of architectures to perform quick and efficient power consumption estimations without loosing accuracy. This approach is fully supported by a tool and is validated using a simple thermal mitigation case study and checked against physical measurements. We show that, for our case study, the relative error between our tool and real values is 8% in average.
Keywords :
"Unified modeling language","Registers","Software","Power demand","Hardware","Estimation","Clocks"
Publisher :
ieee
Conference_Titel :
Software Engineering and Advanced Applications (SEAA), 2015 41st Euromicro Conference on
ISSN :
1089-6503
Electronic_ISBN :
2376-9505
Type :
conf
DOI :
10.1109/SEAA.2015.34
Filename :
7302432
Link To Document :
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