Tarun Dubey, Om Prakash Sahu. Broadcasting with Controlled Redundancy and Improved Localization in Wireless Sensor Networks[J]. Journal of Electronic Science and Technology, 2013, 11(4): 404-407. DOI: 10.3969/j.issn.1674-862X.2013.04.012
Citation: Tarun Dubey, Om Prakash Sahu. Broadcasting with Controlled Redundancy and Improved Localization in Wireless Sensor Networks[J]. Journal of Electronic Science and Technology, 2013, 11(4): 404-407. DOI: 10.3969/j.issn.1674-862X.2013.04.012

Broadcasting with Controlled Redundancy and Improved Localization in Wireless Sensor Networks

doi: 10.3969/j.issn.1674-862X.2013.04.012
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  • Author Bio:

    Tarun Dubey received his B.Tech and M.Tech degrees in 2001 and 2004, respectively. Presently, he is pursuing the Ph.D. degree with National Institute of Technology, Kurukshetra, India. He has published more than 12 papers in various national and international journals and conferences, tarundubey79@yahoo.co.in;
    Om Prakash Sahu, ops_nitk@yahoo.co.in

    Tarun Dubey received his B.Tech and M.Tech degrees in 2001 and 2004, respectively. Presently, he is pursuing the Ph.D. degree with National Institute of Technology, Kurukshetra, India. He has published more than 12 papers in various national and international journals and conferences, tarundubey79@yahoo.co.in;
    Om Prakash Sahu, ops_nitk@yahoo.co.in

  • Authors’ information: Tarun Dubey
  • Received Date: 2013-02-25
  • Rev Recd Date: 2013-04-26
  • Publish Date: 2013-12-24
  • Wireless sensor networks (WSNs) consist of sensor nodes that broadcast a message within a network. Efficient broadcasting is a key requirement in sensor networks and has been a focal point of research over the last few years. There are many challenging tasks in the network, including redundancy control and sensor node localization that mainly depend on broadcasting. In this paper, we propose a broadcasting algorithm to control redundancy and improve localization (BACRIL) in WSNs. The proposed algorithm incorporates the benefits of the gossip protocol for optimizing message broadcasting within the network. Simulation results show a controlled level of redundancy, which is up to 57.6% if the number of sensor nodes deployed in a 500 m500 m area are increased from 50 to 500.
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