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$$(\alpha , \tau )$$ ( α , τ ) -Monitoring for event detection in wireless sensor networks

Author

Listed:
  • Ran Bi

    (Harbin Institute of Technology)

  • Jianzhong Li

    (Harbin Institute of Technology)

  • Hong Gao

    (Harbin Institute of Technology)

  • Yingshu Li

    (Harbin Institute of Technology
    Georgia State University)

Abstract

Detecting abnormal events is one of the fundamental issues in wireless sensor networks (WSNs). In this paper, we investigate $$(\alpha ,\tau )$$ ( α , τ ) -monitoring in WSNs. For a given monitored threshold $$\alpha $$ α , we prove that (i) the tight upper bound of $$\Pr [{S(t)} \ge \alpha ]$$ Pr [ S ( t ) ≥ α ] is $$O\left( {\exp \left\{ { - n\ell \left( {\frac{\alpha }{{nsup}},\frac{{\mu (t)}}{{nsup}}} \right) } \right\} } \right) $$ O exp - n ℓ α n s u p , μ ( t ) n s u p , if $$\mu (t) \alpha $$ μ ( t ) > α , where $$\Pr [X]$$ Pr [ X ] is the probability of random event $$X,\, S(t)$$ X , S ( t ) is the sum of the monitored area at time $$t,\, n$$ t , n is the number of the sensor nodes, $$sup$$ s u p is the upper bound of sensed data, $$ \mu (t)$$ μ ( t ) is the expectation of $$S(t)$$ S ( t ) , and $$\ell ({x_1},{x_2}) = {x_1}\ln \left( {\frac{{{x_1}}}{{{x_2}}}} \right) + (1 - {x_1})\ln \left( {\frac{{1 - {x_1}}}{{1 - {x_2}}}} \right) $$ ℓ ( x 1 , x 2 ) = x 1 ln x 1 x 2 + ( 1 - x 1 ) ln 1 - x 1 1 - x 2 . An instant $$(\alpha ,\tau )$$ ( α , τ ) -monitoring scheme is then developed based on the upper bound. Moreover, approximate continuous $$(\alpha , \tau )$$ ( α , τ ) -monitoring is investigated. We prove that the probability of false negative alarm is $$\delta $$ δ , if the sample size is for a given precision requirement, where is the fractile of a standard normal distribution. Finally, the performance of the proposed algorithms is validated through experiments.

Suggested Citation

  • Ran Bi & Jianzhong Li & Hong Gao & Yingshu Li, 2016. "$$(\alpha , \tau )$$ ( α , τ ) -Monitoring for event detection in wireless sensor networks," Journal of Combinatorial Optimization, Springer, vol. 32(4), pages 985-1001, November.
  • Handle: RePEc:spr:jcomop:v:32:y:2016:i:4:d:10.1007_s10878-015-9837-2
    DOI: 10.1007/s10878-015-9837-2
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    References listed on IDEAS

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    1. Minming Li & Qin Liu & Jianping Wang & Yingchao Zhao, 2012. "Dispatching design for storage-centric wireless sensor networks," Journal of Combinatorial Optimization, Springer, vol. 24(4), pages 485-507, November.
    2. Guangting Chen & Suhui Cui, 2013. "Relay node placement in two-tiered wireless sensor networks with base stations," Journal of Combinatorial Optimization, Springer, vol. 26(3), pages 499-508, October.
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