DocumentCode :
2509581
Title :
Energy leakage in low power embedded operating systems using DVFS policy
Author :
Ouni, Bassem ; Belleudy, Cécile ; Ben Rekhissa, Hajer ; Senn, Eric
Author_Institution :
LEAT, Univ. of Nice Sophia-Antipolis, Sophia-Antipolis, France
fYear :
2012
fDate :
6-8 June 2012
Firstpage :
1
Lastpage :
4
Abstract :
The leakage energy consumption is substantial and increasing for multiprocessor systems. That is why embedded operating systems adapt power management decisions to the variable characteristics of cores, improving system-wide power consumption and performance. Low power operating systems use key techniques such as Dynamic Voltage Frequency Scaling (DVFS) to save the energy consumption by changing dynamically the supply voltage and operating frequency. When the processor changes the execution from one task to another or vary the core frequency, an amount of energy is consumed. We, in this paper, propose an approach that characterizes the overhead of context switch in low power embedded operating systems. We study the influence of hardware and software parameters on the energy consumption. Then, we extract models of the energy overhead. We apply the proposed approach to multi-process software benchmark programs and we validate its applicability in the context of an embedded system containing an OMAP3530 processor and running embedded Linux as an operating system.
Keywords :
Linux; embedded systems; multiprocessing programs; DVFS policy; Linux; OMAP3530 processor; dynamic voltage frequency scaling; energy leakage; low power embedded operating systems; multiprocess software benchmark programs; multiprocessor systems; power management; system-wide power consumption; Context; Energy consumption; Hardware; Operating systems; Power demand; Processor scheduling; Switches; Context switch; DVFS technique; Energy consumption;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Faible Tension Faible Consommation (FTFC), 2012 IEEE
Conference_Location :
Paris
Print_ISBN :
978-1-4673-0822-9
Type :
conf
DOI :
10.1109/FTFC.2012.6231735
Filename :
6231735
Link To Document :
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