DocumentCode
1527677
Title
WASP: A System and Algorithms for Accurate Radio Localization Using Low-Cost Hardware
Author
Sathyan, Thuraiappah ; Humphrey, David ; Hedley, Mark
Author_Institution
Inf. & Commun. Technolo gies Center, Commonwealth Sci. & Ind. Res. Organ., Epping, NSW, Australia
Volume
41
Issue
2
fYear
2011
fDate
3/1/2011 12:00:00 AM
Firstpage
211
Lastpage
222
Abstract
In this paper, we present a low-cost wireless sensor network platform, called wireless ad hoc system for positioning (WASP), that has been developed for high-accuracy localization and tracking. This platform uses the time of arrival (TOA) of beacon signals periodically transmitted by the nodes at known times for localization. The system was designed to have a unique tradeoff between hardware complexity and processing complexity to provide high accuracy at minimal cost in complex radio propagation environments. To enable the system to perform well in realistic environments, it was also necessary to develop novel extensions to existing algorithms for the measurement of TOA, localization, and tracking. In this paper, we describe the architecture, hardware, and algorithms of WASP and present results based on field trials conducted in different radio propagation environments. The results show that WASP achieves a ranging accuracy of 0.15 m outdoors and 0.5 m indoors when around 12 anchor nodes are used. These accuracies are achieved with operating range of up to 200 m outdoors and 30 m indoors. This compares favorably to other published results for systems operating in realistic environments.
Keywords
ad hoc networks; indoor radio; radio direction-finding; radiowave propagation; time-of-arrival estimation; wireless sensor networks; WASP; accurate radio localization; anchor nodes; beacon signals; low-cost hardware; low-cost wireless sensor network; radio propagation; time of arrival; tracking; wireless ad hoc system for positioning; Australia; Computerized monitoring; Costs; Global Positioning System; Hardware; Performance evaluation; Radio propagation; Safety; Signal processing algorithms; Wireless sensor networks; Indoor propagation; least squares estimation; multipath; radio localization and tracking; time of arrival (TOA); two-way ranging; wireless sensor networks (WSNs);
fLanguage
English
Journal_Title
Systems, Man, and Cybernetics, Part C: Applications and Reviews, IEEE Transactions on
Publisher
ieee
ISSN
1094-6977
Type
jour
DOI
10.1109/TSMCC.2010.2051027
Filename
5499111
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