DocumentCode :
3235274
Title :
Differential Evolution Based Fault Tolerant Topology Control in MANETs
Author :
Gundry, Stephen ; Jianmin Zou ; Kusyk, Janusz ; Sahin, Cem S. ; Uyar, M. Umit
Author_Institution :
Dept. of Electr. Eng., City Coll. of New York, New York, NY, USA
fYear :
2013
fDate :
18-20 Nov. 2013
Firstpage :
864
Lastpage :
869
Abstract :
We study a fault tolerant differential evolution based topology control mechanism, called TCM-Y, to direct the movements of autonomous vehicles that dynamically adjust their speed and directions in MANETs. TCM-Y uses a Yao graph inspired fitness function to preserve a node´s minimum desired number of connections with its neighbors while uniformly dispersing mobile nodes in an unknown terrain. We present a formal analysis of TCM-Y to show that it provides a fault tolerant node spreading mechanism since any node will have at least k neighbors at all times. The effectiveness of TCM-Y is evaluated by comparing it with a popular deterministic node spreading mechanism called Constrained Coverage for Mobile Sensor Nodes (CC-MSN) that has similar objectives as TCM-Y. Experimental results obtained from our simulation software show that TCM-Y performs significantly better than CC-MSN with respect to normalized area coverage, average distance traveled, average connectivity, and the minimum connectivity achieved by mobile nodes.
Keywords :
evolutionary computation; fault tolerant control; graph theory; mobile ad hoc networks; telecommunication network topology; CC-MSN; MANETs; TCM-Y formal analysis; Yao graph inspired fitness function; autonomous vehicles; constrained coverage for mobile sensor nodes; deterministic node spreading mechanism; differential evolution based fault tolerant topology control mechanism; fault tolerant node spreading mechanism; mobile nodes; simulation software; Ad hoc networks; Mobile computing; Mobile nodes; Mobile robots; Nickel; Topology; MANET; Yao graphs; autonomous mobile nodes; differential evolution; fault tolerant networks; mobile node distribution; topology control;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Military Communications Conference, MILCOM 2013 - 2013 IEEE
Conference_Location :
San Diego, CA
Type :
conf
DOI :
10.1109/MILCOM.2013.151
Filename :
6735732
Link To Document :
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