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Sensor Deployment and Scheduling for Target Coverage Problem in Wireless Sensor Networks

IEEE Sensors Journal · 2013 · Vol. 14(3) · pp. 636–644
S. MiniSiba K. UdgataSamrat L. Sabat

Abstract

Network lifetime plays an integral role in setting up an efficient wireless sensor network. The objective of this paper is twofold. The first one is to deploy sensor nodes at optimal locations such that the theoretically computed network lifetime is maximum. The second is to schedule these sensor nodes such that the network attains the maximum lifetime. Thus, the overall objective of this paper is to identify optimal deployment locations of the given sensor nodes with a pre-specified sensing range, and to schedule them such that the network lifetime is maximum with the required coverage level. Since the upper bound of the network lifetime for a given network can be computed mathematically, we use this knowledge to compute locations of deployment such that the network lifetime is maximum. Further, the nodes are scheduled to achieve this upper bound. In this paper, we use artificial bee colony algorithm and particle swarm optimization for sensor deployment problem followed by a heuristic for scheduling. A comparative study shows that artificial bee colony algorithm performs better for sensor deployment problem. The proposed heuristic was able to achieve the theoretical upper bound in all the experimented cases.

Energy Efficient Wireless Sensor NetworksDistributed Control Multi-Agent SystemsIndoor and Outdoor Localization TechnologiesWireless sensor networkParticle swarm optimizationComputer scienceSoftware deploymentScheduling (production processes)ScheduleJob shop schedulingKey distribution in wireless sensor networksUpper and lower boundsReal-time computing
Citations
288
FWCI
28.50
field-weighted impact
References
46
Percentile
100%
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Citations per year
References
On the performance of artificial bee colony (ABC) algorithm
Applied Soft Computing · 2007 · 3,641 citations
Sensor networks: Evolution, opportunities, and challenges
Proceedings of the IEEE · 2003 · 3,065 citations
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