DocumentCode :
2580113
Title :
Particle filter based positioning with 3GPP-LTE in indoor environments
Author :
Gentner, Christian ; Muñoz, Estefanía ; Khider, Mohammed ; Staudinger, Emanuel ; Sand, Stephan ; Dammann, Armin
Author_Institution :
German Aerosp. Center (DLR), Inst. of Commun. & Navig., Wessling, Germany
fYear :
2012
fDate :
23-26 April 2012
Firstpage :
301
Lastpage :
308
Abstract :
Global navigation satellite systems (GNSSs) can deliver very good position estimates under optimum conditions. However, especially in urban and indoor scenarios with severe multipath propagation and blocking of satellites by buildings the accuracy loss can be very large. Often, a position with GNSS is impossible in these scenarios. On the other hand, cellular wireless communication systems such as the third generation partnership project (3GPP) long-term evolution (LTE) provide excellent coverage in urban and most indoor environments. Thus, this paper researches timing based positioning algorithms, in this case time difference of arrival (TDoA), using 3GPP-LTE measurements. Several approaches and algorithms exist to solve the navigation equation for cellular systems, for instance Bayes filtering methods such as Kalman or particle filter. This paper specifically considers and develops a particle filter for 3GPP-LTE TDoA positioning. To obtain better positioning results, a 3GPP-LTE TDoA error model is derived. This error model is afterwards included in the likelihood function of the particle filter. The last part of this paper, evaluates the positioning performances of the developed particle filter in an indoor scenario. These evaluations show clearly the possibility of using 3GPP-LTE measurements for indoor positioning.
Keywords :
3G mobile communication; Bayes methods; Long Term Evolution; cellular radio; indoor environment; indoor radio; multipath channels; particle filtering (numerical methods); position measurement; satellite navigation; time-of-arrival estimation; 3GPP-LTE TDoA error model; 3GPP-LTE TDoA positioning; 3GPP-LTE measurements; Bayes filtering methods; GNSS; Kalman filter; accuracy loss; cellular systems; cellular wireless communication systems; global navigation satellite systems; indoor environments; indoor positioning; indoor scenarios; likelihood function; multipath propagation; navigation equation; particle filter based positioning; position estimates; positioning performances; positioning results; satellite blocking; third generation partnership project long-term evolution; time difference of arrival; timing based positioning algorithms; urban environments; urban scenarios; Atmospheric measurements; Particle measurements; Satellites;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Position Location and Navigation Symposium (PLANS), 2012 IEEE/ION
Conference_Location :
Myrtle Beach, SC
ISSN :
2153-358X
Print_ISBN :
978-1-4673-0385-9
Type :
conf
DOI :
10.1109/PLANS.2012.6236895
Filename :
6236895
Link To Document :
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