DocumentCode :
2285478
Title :
Self-organizing network control structures: local algorithms for forming global hierarchies
Author :
Steenstrup, Martha E.
Author_Institution :
Stow Res. LLC, Flanders, NJ, USA
Volume :
2
fYear :
2001
fDate :
2001
Firstpage :
952
Abstract :
We present a distributed clustering algorithm, executed asynchronously by each node using only local information, that builds a hierarchical cluster-based control structure for a mobile wireless network. The clustering process consists of a wave propagation phase for forming and labelling an initial set of clusters based on similarity and number of members, followed by a boundary extension phase for adjusting the size and number of clusters so that tiny clusters (created as artifacts of wave propagation) are absorbed by larger ones. Cluster absorption is also used to assimilate mobile nodes into existing clusters. We assess the performance of the algorithm in terms of the number and composition of clusters produced and the transmission and computation overhead per node. Through simulation, we illustrate that this clustering algorithm is well-suited to moderately mobile networks with limited resources.
Keywords :
military communication; mobile radio; packet radio networks; protocols; telecommunication control; asynchronous execution; boundary extension phase; cluster absorption; cluster composition; computation overhead; distributed clustering algorithm; hierarchical control structure; labelling; limited resources; local information; military communication; mobile wireless network; performance; self-organizing network control; similarity; simulation; transmission overhead; wave propagation phase; Absorption; Clustering algorithms; Communication system control; Frequency; Iterative algorithms; Labeling; Organizing; Self-organizing networks; Size control; Wireless networks;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Military Communications Conference, 2001. MILCOM 2001. Communications for Network-Centric Operations: Creating the Information Force. IEEE
Print_ISBN :
0-7803-7225-5
Type :
conf
DOI :
10.1109/MILCOM.2001.985978
Filename :
985978
Link To Document :
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