DocumentCode :
129946
Title :
A Framework to Construct Customized Harmonic Periods for Real-Time Systems
Author :
Nasri, Mohsen ; Fohler, Gerhard ; Kargahi, Mehdi
Author_Institution :
Sch. of Electr. & Comput. Eng., Univ. of Tehran, Tehran, Iran
fYear :
2014
fDate :
8-11 July 2014
Firstpage :
211
Lastpage :
220
Abstract :
The periodic task model has been widely used in real-time systems due to the periodic behavior of many applications or periodic observation patterns of environmental events as in control applications. While the tasks of some applications have inherent values for periods, many can be defined via ranges of acceptable values. The designer choice of period values has consequences w.r.t. To utilization of the task set and the resulting hyper period. Harmonic task sets are favored, e.g., for their polynomial-time worst case response time analysis or their small hyper periods, which is of major concern e.g., for hyper visors used in virtualization or time triggered systems. In this paper we present a model to describe harmonic relations between ranges of period values, rather than single numbers only. We derive sufficient conditions for the existence of a linear-time solution, as well as a graph representation for the relations between period ranges. We provide utilization bounds of each resulting harmonic range, giving the designer flexibility to select a harmonic task set with high or low utilization. The tightness of the bounds as well as efficiency of our period assignment algorithms have been evaluated by synthetic experiments via system utilization and feasibly constructed harmonic task sets.
Keywords :
graph theory; real-time systems; task analysis; virtualisation; control applications; customized harmonic periods; designer flexibility; environmental events; graph representation; harmonic range; harmonic relations; harmonic task sets; hyper visors; linear-time solution; period assignment algorithms; periodic behavior; periodic observation patterns; periodic task model; polynomial time worst case response time analysis; real-time systems; small hyper periods; synthetic experiments; system utilization; time triggered systems; utilization bounds; virtualization; Artificial intelligence; Computers; Educational institutions; Harmonic analysis; Quality of service; Real-time systems; Virtual machine monitors; Harmonic Period; Period Assignment; Period Range; Real-Time Systems; Utilization Bound;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Real-Time Systems (ECRTS), 2014 26th Euromicro Conference on
Conference_Location :
Madrid
Print_ISBN :
978-1-4799-5797-2
Type :
conf
DOI :
10.1109/ECRTS.2014.31
Filename :
6932603
Link To Document :
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