Title :
On distributed fault-tolerant detection in wireless sensor networks
Author :
Luo, Xuanwen ; Dong, Ming ; Huang, Yinlun
Author_Institution :
Dept. of Comput. Sci., Wayne State Univ., Detroit, MI, USA
Abstract :
In this paper, we consider two important problems for distributed fault-tolerant detection in wireless sensor networks: 1) how to address both the noise-related measurement error and sensor fault simultaneously in fault-tolerant detection and 2) how to choose a proper neighborhood size n for a sensor node in fault correction such that the energy could be conserved. We propose a fault-tolerant detection scheme that explicitly introduces the sensor fault probability into the optimal event detection process. We mathematically show that the optimal detection error decreases exponentially with the increase of the neighborhood size. Experiments with both Bayesian and Neyman-Pearson approaches in simulated sensor networks demonstrate that the proposed algorithm is able to achieve better detection and better balance between detection accuracy and energy usage. Our work makes it possible to perform energy-efficient fault-tolerant detection in a wireless sensor network.
Keywords :
belief networks; error correction; fault tolerant computing; probability; wireless sensor networks; Bayesian approach; Neyman-Pearson approach; distributed fault-tolerant detection; energy-efficient fault-tolerant detection; noise-related measurement error; optimal event detection process; sensor fault probability; wireless sensor network; Chemical sensors; Circuit faults; Event detection; Fault detection; Fault tolerance; Intelligent networks; Measurement errors; Sensor fusion; Sensor phenomena and characterization; Wireless sensor networks; Index Terms- Distributed event detection; energy-efficiency; fault tolerance; sensor fusion; wireless sensor networks.;
Journal_Title :
Computers, IEEE Transactions on