DocumentCode :
2930828
Title :
Modeling and Worst-Case Dimensioning of Cluster-Tree Wireless Sensor Networks
Author :
Koubaa, Anis ; Alves, Mário ; Tovar, Eduardo
Author_Institution :
IPP-HURRAY! Res. Group, Polytech. Inst. of Porto
fYear :
2006
fDate :
Dec. 2006
Firstpage :
412
Lastpage :
421
Abstract :
Time-sensitive wireless sensor network (WSN) applications require finite delay bounds in critical situations. This paper provides a methodology for the modeling and the worst-case dimensioning of cluster-tree WSNs. We provide a fine model of the worst-case cluster-tree topology characterized by its depth, the maximum number of child routers and the maximum number of child nodes for each parent router. Using Network Calculus, we derive "plug-and-play " expressions for the end-to-end delay bounds, buffering and bandwidth requirements as a function of the WSN cluster-tree characteristics and traffic specifications. The cluster-tree topology has been adopted by many cluster-based solutions for WSNs. We demonstrate how to apply our general results for dimensioning IEEE 802.15.4/Zigbee cluster-tree WSNs. We believe that this paper shows the fundamental performance limits of cluster-tree wireless sensor networks by the provision of a simple and effective methodology for the design of such WSNs
Keywords :
IEEE standards; network topology; wireless sensor networks; IEEE 802.15.4; Zigbee; bandwidth requirement; buffering; cluster-tree wireless sensor network; end-to-end delay bound; network calculus; plug-and-play expression; time-sensitive wireless sensor network; worst-case cluster-tree topology; worst-case dimensioning; Bandwidth; Calculus; Media Access Protocol; Network topology; Peer to peer computing; Predictive models; Quality of service; Time division multiple access; Wireless sensor networks; ZigBee;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Real-Time Systems Symposium, 2006. RTSS '06. 27th IEEE International
Conference_Location :
Rio de Janeiro
ISSN :
1052-8725
Print_ISBN :
0-7695-2761-2
Type :
conf
DOI :
10.1109/RTSS.2006.29
Filename :
4032368
Link To Document :
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