DocumentCode
2833958
Title
Automatic discovery of topologies and addressing for Linear wireless sensors networks
Author
Sarr, M.D. ; Delobel, Francois ; Misson, Michel ; Niang, Ibrahima
Author_Institution
LIMOS, Clermont Univ., Clermont-Ferrand, France
fYear
2012
fDate
21-23 Nov. 2012
Firstpage
1
Lastpage
7
Abstract
Wireless sensor networks are a collection of sensor nodes that collaborate to sense a specific event in a given environment. When sensors monitor a structure organized linearly (e.g., pipelines, rivers, railways), they are organized in Linear WSN (LWSN, constituted by connected portions of lines), with different properties than a uniformly deployed WSN. The distributed address allocation in the ZigBee cluster-tree suffers from limitations in LWSN: the number of children is limited, as well as the maximum number of children routers, and the maximum tree depth. Stochastic address assignment, also available in ZigBee, has a high cost in exchanged messages and requires an expensive (in terms of messages and memory) routing process. This paper proposes an automatic discovery of topologies for linear wireless sensor networks combined with an efficient addressing mechanism. We show that our proposition avoids the waste of addresses while keeping the number of messages exchanged proportional to the number of nodes in the network.
Keywords
Zigbee; telecommunication network routing; telecommunication network topology; wireless sensor networks; ZigBee cluster-tree; addressing mechanism; distributed address allocation; linear WSN; linear wireless sensor networks; routing process; sensor nodes; stochastic address assignment; topology automatic discovery; Bridges; Network topology; Routing; Standards; Topology; Wireless sensor networks; Zigbee; Addressing; Automatic Deployment; Clustering; LWSN; Linear Wireless Sensors Networks; Routing; Topology Discovery;
fLanguage
English
Publisher
ieee
Conference_Titel
Wireless Days (WD), 2012 IFIP
Conference_Location
Dublin
ISSN
2156-9711
Print_ISBN
978-1-4673-4402-9
Electronic_ISBN
2156-9711
Type
conf
DOI
10.1109/WD.2012.6402801
Filename
6402801
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