DocumentCode :
1500656
Title :
Positional Accuracy Measurement and Error Modeling for Mobile Tracking
Author :
Sharp, Ian ; Yu, Kegen ; Sathyan, Thuraiappah
Volume :
11
Issue :
6
fYear :
2012
fDate :
6/1/2012 12:00:00 AM
Firstpage :
1021
Lastpage :
1032
Abstract :
This paper presents a method of determining the statistical positional accuracy of a moving object being tracked by any 2D (but particularly radiolocation) positioning system without requiring a more accurate reference system. Commonly for testing performance only static positional errors are measured, but typically for radiolocation systems the positional performance is significantly different for moving objects compared with stationary objects. When only the overall statistical performance is required, the paper describes a measurement technique based on determining 1D cross-track errors from a nominal path, and then using this data set to determine the overall 2D positional error statistics. Comparison with simulated data shows that the method has good accuracy. The method is also tested with vehicle tracking in a city and people tracking within a building. For the indoor case, static and dynamic measurements allowed the degrading effect of body-worn devices due to signal blockage to be determined. Error modeling is also performed and a Rayleigh-Gamma model is proposed to describe the radial positional errors. It is shown that this model has a good match with both indoor and outdoor field measurements.
Keywords :
error statistics; indoor radio; mobile radio; object tracking; position measurement; radio direction-finding; radionavigation; 2D positional error statistics; 2D positioning system; Rayleigh-Gamma model; error modeling; indoor field measurement; mobile object tracking; outdoor field measurement; people tracking; positional accuracy measurement; radial positional errors; radiolocation system; statistical performance; vehicle tracking; Accuracy; Base stations; Error analysis; Measurement uncertainty; Mobile communication; Mobile handsets; Position measurement; Positional accuracy measurement; experimental verification.; indoor/outdoor mobile tracking; positional error modeling;
fLanguage :
English
Journal_Title :
Mobile Computing, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-1233
Type :
jour
DOI :
10.1109/TMC.2011.119
Filename :
6188345
Link To Document :
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