DocumentCode
839999
Title
A Lightweight Collaborative Fault Tolerant Target Localization System for Wireless Sensor Networks
Author
Merhi, Zaher M. ; Elgamel, Mohamed A. ; Bayoumi, Magdy A.
Author_Institution
Univ. of Louisiana at Lafayette, Lafayette, LA, USA
Volume
8
Issue
12
fYear
2009
Firstpage
1690
Lastpage
1704
Abstract
Efficient target localization in wireless sensor networks is a complex and challenging task. Many past assumptions for target localization are not valid for wireless sensor networks. Limited hardware resources, energy conservation, and noise disruption due to wireless channel contention and instrumentation noise pose new constraints on designers nowadays. In this work, a lightweight acoustic target localization system for wireless sensor networks based on time difference of arrival (TDOA) is presented. When an event is detected, each sensor belonging to a group calculates an estimate of the target´s location. A fuzzyART data fusion center detects errors and fuses estimates according to a decision tree based on spatial correlation and consensus vote. Moreover, a MAC protocol for wireless sensor networks (EB-MAC) is developed which is tailored for event-based systems that characterizes acoustic target localization systems. The system was implemented on MicaZ motes with TinyOS and a PIC 18F8720 microcontroller board as a coprocessor. Errors were detected and eliminated hence acquiring a fault tolerant operation. Furthermore, EB-MAC provided a reliable communication platform where high channel contention was lowered while maintaining high throughput.
Keywords
access protocols; decision trees; fault tolerance; sensor fusion; telecommunication network reliability; wireless channels; wireless sensor networks; EB-MAC; MAC protocol; MicaZ motes; PIC 18F8720 microcontroller board; TDOA; TinyOS; acoustic target localization systems; coprocessor; decision tree; energy conservation; event-based systems; fuzzyART data fusion center; hardware resources; lightweight collaborative fault tolerant target localization system; noise disruption; reliable communication platform; spatial correlation; time difference-of-arrival; wireless channel contention; wireless sensor networks; Data fusion; localization; sensor networks; wireless communication.;
fLanguage
English
Journal_Title
Mobile Computing, IEEE Transactions on
Publisher
ieee
ISSN
1536-1233
Type
jour
DOI
10.1109/TMC.2009.81
Filename
4912210
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