A Hybrid Cluster-Based Target Tracking Protocol for Wireless Sensor Networks
Author(s) -
Zhibo Wang,
Wei Lou,
Zhi Wang,
Junchao Ma,
Honglong Chen
Publication year - 2013
Publication title -
international journal of distributed sensor networks
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.324
H-Index - 53
eISSN - 1550-1477
pISSN - 1550-1329
DOI - 10.1155/2013/494863
Subject(s) - computer science , wireless sensor network , tracking (education) , scalability , cluster analysis , cluster (spacecraft) , task (project management) , protocol (science) , distributed computing , tracking system , computer network , real time computing , artificial intelligence , medicine , psychology , pedagogy , alternative medicine , management , pathology , database , economics , kalman filter
Target tracking is a typical and important application of wireless sensor networks (WSNs). In consideration of the network scalability and energy efficiency for target tracking in large-scale WSNs, it has been employed as an effective solution by organizing the WSNs into clusters. However, tracking a moving target in cluster-based WSNs suffers a boundary problem when the target moves across or along the boundaries of clusters, as the static cluster membership prevents sensors in different clusters from sharing information. In this paper, we propose a novel mobility management protocol, called hybrid cluster-based target tracking (HCTT), which integrates on-demand dynamic clustering into a cluster-based WSN for target tracking. By constructing on-demand dynamic clusters at boundary regions, nodes from different static clusters that detect the target can temporarily share information, and the tracking task can be handed over smoothly from one static cluster to another. As the target moves, static clusters and on-demand dynamic clusters alternately manage the target tracking task. Simulation results show that the proposed protocol performs better in tracking the moving target when compared with other typical target tracking protocols. © 2013 Zhibo Wang et al.
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