DocumentCode
16428
Title
Enhanced Least-Squares Positioning Algorithm for Indoor Positioning
Author
Sharp, Ian ; Kegen Yu
Author_Institution
Wireless & Networking Technol. Lab., CSIRO, Marsfield, NSW, Australia
Volume
12
Issue
8
fYear
2013
fDate
Aug. 2013
Firstpage
1640
Lastpage
1650
Abstract
This paper presents an enhanced least-squares positioning algorithm for locating and tracking within indoor environments where multipath and nonline-of-sight propagation conditions predominate. The ranging errors are modeled as a zero-mean random component plus a bias component that is assumed to be a linear function of the range. Through minimizing the mean-square error of the position estimation, an expression for the optimal estimate of the bias parameter is obtained. Both range and pseudo-range-based positioning are considered. Simulations and experimentation are conducted which show that a significant accuracy gain can be achieved for range-based positioning using the enhanced least-squares algorithm. It is also observed that the pseudo-range-based least-squares algorithm is little affected by the choice of the bias parameter. The results demonstrate that the experimental 5.8-GHz ISM band positioning system can achieve positional accuracy of around half a meter when using the proposed algorithm.
Keywords
indoor radio; least squares approximations; radio direction-finding; radio tracking; radiowave propagation; ISM band; bias parameter; frequency 5.8 GHz; indoor positioning; least squares positioning algorithm; mean square error; multipath propagation; nonline-of-sight propagation; position estimation; range based positioning; zero-mean random component; Accuracy; Algorithm design and analysis; Base stations; Measurement uncertainty; Mobile communication; Position measurement; Standards; Indoor positioning; enhanced least-squares algorithm; experimental verification; multipath and nonline-of-sight propagation; optimal bias parameter; positional accuracy analysis; range and pseudo-range;
fLanguage
English
Journal_Title
Mobile Computing, IEEE Transactions on
Publisher
ieee
ISSN
1536-1233
Type
jour
DOI
10.1109/TMC.2012.124
Filename
6212501
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