Title :
Intelligent Dynamic Radio Tracking in Indoor Wireless Local Area Networks
Author :
Kushki, Azadeh ; Plataniotis, Konstantinos N. ; Venetsanopoulos, Anastasios N.
Author_Institution :
Prism Lab., Bloorview Kids Rehab, Toronto, ON, Canada
fDate :
3/1/2010 12:00:00 AM
Abstract :
Indoor positioning is an enabling technology for delivery of location-based services in mobile computing environments. This paper proposes a positioning solution using received signal strength in indoor wireless local area networks. In this application, an explicit measurement equation and the corresponding noise statistics are unknown because of the complexity of the indoor propagation channel. To address these challenges, we introduce a new state-space Bayesian filter: the nonparametric information (NI) filter. This filter effectively tracks motion in situations where the Kalman filter and its variants are inapplicable, while maintaining a computational complexity comparable to that of the Kalman filter. To deal with the noisy nature of the indoor propagation environment, the NI filter is used in the design of an intelligent dynamic WLAN tracking system. The system anticipates future position values and adapts its sensing and estimation parameters accordingly. Our experimental results conducted on measurements from a real office environment indicate that the combination of the intelligent design and the NI filter results in significant improvements over the Kalman and particle filters.
Keywords :
Bayes methods; filtering theory; indoor communication; mobile computing; mobility management (mobile radio); statistical analysis; wireless LAN; indoor positioning; indoor propagation channel; indoor wireless local area network; intelligent dynamic WLAN tracking system; intelligent dynamic radio tracking; noise statistics; nonparametric Information filter; state-space Bayesian filter; Bayesian methods; Equations; Information filtering; Information filters; Intelligent networks; Mobile computing; Noise measurement; Statistics; Wireless LAN; Working environment noise; Mobility; location verification; location-dependent and sensitive mobile applications; nonparametric statistics; support services for mobile computing.;
Journal_Title :
Mobile Computing, IEEE Transactions on
DOI :
10.1109/TMC.2009.141