Title :
GDVFA: A distributed algorithm based on grid and virtual forces for the redeployment of WSNs
Author :
Mahfoudh, Saoucene ; Khoufi, Ines ; Minet, Pascale ; Laouiti, Anis
Author_Institution :
INRIA, Le Chesnay, France
Abstract :
The distributed virtual forces deployment algorithm provides a very good area coverage and guarantees network connectivity for a sufficient number of sensor nodes. It relies on local information between neighboring sensor nodes. However, its main drawback is node oscillations and hence a high amount of sensor node energy wasted. The grid based strategy divides the monitored area into virtual cells. Each cell center determines the position of a sensor node. In this paper we propose GDVFA that combines the advantages of both strategies: on the one hand coverage and connectivity for virtual forces strategy and on the other hand avoidance of node oscillations for grid strategy. Simulation results reported in this paper show that GDVFA considerably reduces the energy consumed by sensor nodes. This comes from: the detection of redundant nodes that are put in sleep mode, and the avoidance of node oscillations by stopping nodes.
Keywords :
distributed algorithms; sensor placement; wireless sensor networks; GDVFA; WSN redeployment; distributed algorithm; distributed virtual forces deployment algorithm; grid based strategy; grid distributed virtual forces algorithm; neighboring sensor node; network connectivity; node oscillation avoidance; redundant node detection; sensor node position; sleep mode; virtual cell; wireless sensor network; Energy consumption; Force; Mobile communication; Mobile computing; Oscillators; Topology; Wireless networks;
Conference_Titel :
Wireless Communications and Networking Conference (WCNC), 2014 IEEE
Conference_Location :
Istanbul
DOI :
10.1109/WCNC.2014.6952969