articleTop 1% cited
Distributed Bayesian algorithms for fault-tolerant event region detection in wireless sensor networks
IEEE Transactions on Computers · 2004 · Vol. 53(3) · pp. 241–250
Bhaskar Krishnamachari✉(Engineering Systems (United States))S. Sitharama Iyengar(Louisiana State University)
Abstract
We propose a distributed solution for a canonical task in wireless sensor networks - the binary detection of interesting environmental events. We explicitly take into account the possibility of sensor measurement faults and develop a distributed Bayesian algorithm for detecting and correcting such faults. Theoretical analysis and simulation results show that 85-95 percent of faults can be corrected using this algorithm, even when as many as 10 percent of the nodes are faulty.
Energy Efficient Wireless Sensor NetworksDistributed Sensor Networks and Detection AlgorithmsSecurity in Wireless Sensor NetworksWireless sensor networkComputer scienceAlgorithmBayesian probabilityDistributed algorithmTask (project management)Event (particle physics)Brooks–Iyengar algorithmWirelessFault tolerance
Funding
- U.S. Department of Energy
- Defense Advanced Research Projects Agency
- Office of Naval Research
- Oak Ridge National Laboratory
Citations
632
FWCI
23.96
field-weighted impact
References
41
Percentile
100%
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Citations per year
References
Grid coverage for surveillance and target location in distributed sensor networks
IEEE Transactions on Computers · 2002 · 927 citations
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IEEE Communications Magazine · 2002 · 13,640 citations
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IEEE Communications Magazine · 1997 · 1,350 citations
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