DocumentCode
3305975
Title
Hybrid Data Fusion techniques for localization in UWB networks
Author
Laaraiedh, M. ; Avrillon, S. ; Uguen, B.
Author_Institution
IETR, Univ. of Rennes 1, Rennes
fYear
2009
fDate
19-19 March 2009
Firstpage
51
Lastpage
57
Abstract
In this paper, we exploit the concept of data fusion in UWB (ultra wide band) localization systems by using different location-dependent observables. We combine ToA (time of arrival) and RSS (received signal strength) in order to get accurate positioning algorithms.We assume that RSS observables are usually available and we study the effect of adding ToA observables on the positioning accuracy. The proposed architecture of hybrid data fusion (HDF) is based on two stages: Ranging using RSS and ToA; and estimation of position by the fusion of estimated ranges. In the first stage, we propose a new estimator of ranges from RSS observables assuming a path loss model. In the second stage, a new ML estimator is developed to merge different ranges with different variances. In order to evaluate these algorithms, simulations are carried out in a generic indoor environment and Cramer Rao lower bounds (CRLB) are investigated. Those algorithms show enhanced positioning results at reasonable noise levels.
Keywords
indoor radio; maximum likelihood estimation; radio direction-finding; sensor fusion; time-of-arrival estimation; ultra wideband communication; Cramer Rao lower bounds; UWB network localization system; generic indoor environment; hybrid data fusion techniques; location-dependent observables; path loss model; position estimation; positioning algorithm; received signal strength; time-of-arrival estimation; ultra wide band system; Bandwidth; Communication system security; Indoor environments; Information security; Intelligent transportation systems; Maximum likelihood estimation; Navigation; Noise level; Shadow mapping; Ultra wideband communication; Cramer Rao Bound; GDOP; Hybrid Data Fusion; Localization; Log Normal Shadowing; Maximum Likelihood; Path Loss; RSS; Ranging; ToA; UWB; Weighted least square;
fLanguage
English
Publisher
ieee
Conference_Titel
Positioning, Navigation and Communication, 2009. WPNC 2009. 6th Workshop on
Conference_Location
Hannover
Print_ISBN
978-1-4244-3292-9
Electronic_ISBN
978-1-4244-3293-6
Type
conf
DOI
10.1109/WPNC.2009.4907803
Filename
4907803
Link To Document