DocumentCode
539172
Title
An analysis of the error characteristics of two time of arrival localization techniques
Author
Sathyan, T. ; Hedley, M. ; Mallick, M.
Author_Institution
ICT Center, CSIRO, Marsfield, NSW, Australia
fYear
2010
fDate
26-29 July 2010
Firstpage
1
Lastpage
7
Abstract
Accurate local positioning systems usually use a network of anchor nodes at known locations to track mobile nodes based on the measurement of the time of arrival (TOA) at anchor nodes of beacon signals transmitted by the mobile nodes. To localize the mobile node either TOA processing, where the unknown transmit time is estimated along with the node location, or time difference of arrival (TDOA) processing, where the transmit time is eliminated before estimating the node location, can be used. We show that the position error bound of both these formulations are the same by analyzing the Cramér-Rao lower bound. When processing data collected in field trials, however, we observed that the TOA processing yields better localization accuracy, and explain this behavior using differential geometry-based curvature measures that show that the TDOA cost function has greater degree of non-linearity.
Keywords
differential geometry; error analysis; mobile computing; position control; tracking; wireless sensor networks; Cramer-Rao lower bound; TDOA cost function; TOA processing; beacon signal; error characteristics analysis; geometry based curvature; local positioning system; mobile node tracking; node location; position error bound; time of arrival localization technique; Accuracy; Equations; Estimation; Global Positioning System; Mobile communication; Position measurement; Time measurement; Crameár-Rao lower bound; TDOA; TOA-ranging; Wireless sensor networks; curvature measures of nonlinearity; differential geometry; localization; pseudo-range;
fLanguage
English
Publisher
ieee
Conference_Titel
Information Fusion (FUSION), 2010 13th Conference on
Conference_Location
Edinburgh
Print_ISBN
978-0-9824438-1-1
Type
conf
DOI
10.1109/ICIF.2010.5711996
Filename
5711996
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