3rd International ICST Conference on Quality of Service in Heterogeneous Wired/Wireless Networks

Research Article

Localized coverage boundary detection for wireless sensor networks

  • @INPROCEEDINGS{10.1145/1185373.1185390,
        author={Chi Zhang and Yanchao Zhang and Yuguang  Fang},
        title={Localized coverage boundary detection for wireless sensor networks},
        proceedings={3rd International ICST Conference on Quality of Service in Heterogeneous Wired/Wireless Networks},
        publisher={ACM},
        proceedings_a={QSHINE},
        year={2006},
        month={8},
        keywords={},
        doi={10.1145/1185373.1185390}
    }
    
  • Chi Zhang
    Yanchao Zhang
    Yuguang Fang
    Year: 2006
    Localized coverage boundary detection for wireless sensor networks
    QSHINE
    ACM
    DOI: 10.1145/1185373.1185390
Chi Zhang1,*, Yanchao Zhang1,*, Yuguang Fang1,*
  • 1: Department of Electrical and Computer Engineering, University of Florida, Gainesville.
*Contact email: zhangchi@ufl.edu, yczhang@ufl.edu, fang@ece.ufl.edu

Abstract

Connected coverage, which reflects how well a target field is monitored under the base station, is the most important performance metrics used to measure the quality of surveillance that wireless sensor networks (WSNs) can provide. To facilitate the measurement of this metrics, we propose two novel algorithms for individual sensor nodes to identify whether they are on the coverage boundary, i.e., the boundary of a coverage hole or network partition. Our algorithms are based on two novel computational geometric techniques called localized Voronoi and neighbor embracing polygons. As compared to previous work, our algorithms can be applied to WSNs of arbitrary topologies. They are also truly distributed and localized by merely needing the minimal position information of one-hop neighbors and a limited number of simple local computations, and thus are of high scalability and energy efficiency. We show the correctness and efficiency of our algorithms by theoretical proofs and extensive simulations.