DocumentCode
1807471
Title
Wi-Fi azimuth and position tracking: Signal propagation, modeling and evaluation
Author
Seitz, Jochen ; Vaupel, T. ; Thielecke, Jorn
Author_Institution
Fraunhofer Inst. for Integrated Circuits IIS, Erlangen, Germany
fYear
2013
fDate
9-12 July 2013
Firstpage
1479
Lastpage
1486
Abstract
Tracking algorithms for estimating and tracking the azimuth angle regarding north and a two-dimensional position of a mobile unit carried by a pedestrian are presented. Outdoors, the azimuth angle of a device can be easily detected using an electronic compass. The position can be calculated using a global navigation satellite system. Indoors, magnetic disturbances lead to unreliable compass outputs. Also, indoors there exists no standard positioning system. Using Wi-Fi signal strength measurements the position of a receiver can be tracked using so called fingerprinting methods. If the signal strengths measurements are collected with directional antennas additionally the azimuth can be tracked. For the presented tracking filters we extended Wi-Fi based Markov localization algorithms for evaluating directional antennas to calculate azimuth besides position. Furthermore, these techniques have been adapted to use a particle filter for the estimation. Well known Wi-Fi fingerprinting approaches are included in the measurement models and pedestrian dead reckoning in the prediction models. Measurements have been collected inside and outside of an office building to evaluate the performance of the different tracking algorithms. Especially in indoor environments these approaches facilitate the use of electronic guides that offer additional information by means of augmented reality, e.g. on museum exhibits in visual range.
Keywords
Markov processes; augmented reality; directive antennas; fingerprint identification; particle filtering (numerical methods); radio receivers; satellite navigation; tracking filters; wireless LAN; Wi-Fi azimuth; Wi-Fi fingerprinting approaches; Wi-Fi signal strength measurements; augmented reality; azimuth angle; compass outputs; directional antennas; electronic compass; electronic guides; extended Wi-Fi based Markov localization algorithms; fingerprinting methods; global navigation satellite system; magnetic disturbances; mobile unit; particle filter; pedestrian dead reckoning; position tracking; positioning system; prediction models; signal evaluation; signal modeling; signal propagation; tracking algorithms; tracking filters; two-dimensional position; Antenna measurements; Azimuth; Base stations; Databases; Directional antennas; IEEE 802.11 Standards; Position measurement;
fLanguage
English
Publisher
ieee
Conference_Titel
Information Fusion (FUSION), 2013 16th International Conference on
Conference_Location
Istanbul
Print_ISBN
978-605-86311-1-3
Type
conf
Filename
6641174
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