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Sensor network data fault detection with maximum a posteriori selection and bayesian modeling

ACM Transactions on Sensor NetworksPublished 1 July 2012
Kevin Ni, Greg Pottie
Citations24
SJR quartileQ1
SJR score0.99
SNIP1.23

TL;DR

This work focuses on using hierarchical Bayesian space-time (HBST) modeling to model the phenomenon of interest, and uses maximum a posteriors selection to identify a set of trustworthy sensors.

Abstract

Current sensor networks experience many faults that hamper the ability of scientists to draw significant inferences. We develop a method to systematically identify when these faults occur so that proper corrective action can be taken. We propose an adaptable modular framework that can utilize different modeling methods and approaches to identifying trustworthy sensors. We focus on using hierarchical Bayesian space-time (HBST) modeling to model the phenomenon of interest, and use maximum a posteriors selection to identify a set of trustworthy sensors. Compared to an analogous linear autoregressive system, we achieve excellent fault detection when the HBST model accurately represents the phenomenon.

Keywords

Computer ScienceBiochemistry, Genetics and Molecular Biology