DocumentCode :
3337921
Title :
Critical-Path based Low-Energy Scheduling Algorithms for Body Area Network Systems
Author :
Liu, Yanhong ; Veeravalli, Bharadwaj ; Viswanathan, Sivakumar
Author_Institution :
Nat. Univ. of Singapore, Singapore
fYear :
2007
fDate :
21-24 Aug. 2007
Firstpage :
301
Lastpage :
308
Abstract :
In this paper, we propose novel low-energy scheduling algorithms with low computational complexities for the heterogeneous body area network (BAN) systems, considering task graphs with deadlines (timing constraints) and precedence relationships to satisfy. Our proposed novel scheme, referred to as "critical-path information track-and-update", analyses the critical-paths, identifies the slack and distributes it over tasks such that the overall energy consumption is minimised. Our dynamic scheduling algorithm utilises the results from the static scheduling algorithm and attempts to aggressively reduce the energy consumption. Simulations for the task graph for a typical BAN application show that our static and dynamic scheduling algorithms deliver 25% and 15% more energy savings respectively compared to typical slack reclamation based scheduling algorithms.
Keywords :
computational complexity; critical path analysis; personal area networks; scheduling; computational complexity; critical-path analysis; critical-path based low-energy scheduling algorithm; critical-path information track-and-update; dynamic scheduling algorithm; heterogeneous body area network system; static scheduling algorithm; task graphs; Body area networks; Body sensor networks; Dynamic scheduling; Energy consumption; Heuristic algorithms; Intelligent sensors; Optimal scheduling; Processor scheduling; Scheduling algorithm; Wireless sensor networks;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Embedded and Real-Time Computing Systems and Applications, 2007. RTCSA 2007. 13th IEEE International Conference on
Conference_Location :
Daegu
ISSN :
1533-2306
Print_ISBN :
978-0-7695-2975-2
Type :
conf
DOI :
10.1109/RTCSA.2007.33
Filename :
4296865
Link To Document :
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