Articles liés à Kinematic Tracking of Multiple Targets: In Wireless...

Kinematic Tracking of Multiple Targets: In Wireless Sensor Networks - Couverture souple

Ashfaque Ur Rahman, Akond; Islam, Atiqul; Naznin, Mahmuda

 
9783639361070: Kinematic Tracking of Multiple Targets: In Wireless Sensor Networks

Synopsis

Multiple targets tracking is one of the challenging applications in a wireless sensor network due to targets' movement in different directions, targets' speed variations and frequent connectivity failures of low powered sensor nodes. If all the low-powered sensor nodes are kept active in tracking multiple targets' coming from different directions of the network, there is high probability of network failure due to the wastage of power. It would be more realistic, if, according to the priority of service, sensor nodes are classified and are kept active. Then, it is possible to reduce energy consumption. In our paper, we propose a distributed tracking framework incorporating sensor network properties which results into a novel service priority based dynamic tracking framework. We simulate our method by a sensor network simulator OMNeT++. We find that our architecture saves energy significantly.

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Présentation de l'éditeur

Multiple targets tracking is one of the challenging applications in a wireless sensor network due to targets' movement in different directions, targets' speed variations and frequent connectivity failures of low powered sensor nodes. If all the low-powered sensor nodes are kept active in tracking multiple targets' coming from different directions of the network, there is high probability of network failure due to the wastage of power. It would be more realistic, if, according to the priority of service, sensor nodes are classified and are kept active. Then, it is possible to reduce energy consumption. In our paper, we propose a distributed tracking framework incorporating sensor network properties which results into a novel service priority based dynamic tracking framework. We simulate our method by a sensor network simulator OMNeT++. We find that our architecture saves energy significantly.

Biographie de l'auteur

Profile of Akond Ashfaque Ur Rahman: Completed B.Sc in Computer Science and Engineering from Bangladesh University of Engineering and Technology. Author of three conference publications which are included in IEEE Xplore. Currently studying as a PhD student in Computer Science in University of Houston.

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