Title :
PBIL PDR for scalable Bluetooth Indoor Localization
Author :
Subramanian, Suguna P. ; Sommer, Juergen ; Zeh, Frank-Peter ; Schmitt, Stephen ; Rosenstiel, Wolfgang
Author_Institution :
Dept. of Comput. Eng., Univ. of Tuebingen, Tubingen, Germany
Abstract :
The ever-existing problems in indoor localization are attaining efficient scalability, reliability and accuracy besides cost efficiency. Although diverse approaches based on WLAN, Bluetooth, ZigBee, RFID and UWB had been divulged for localization and navigation, these schemes often do lack competent localization. Furthermore these schemes linger either expensive or be deficient in accuracy. Moreover not all technologies exist in smart phones. Recent outburst of technology expansion has paved way to solve indoor localization complexity by cohering various positioning methods and sensor models. In this paper, we developed a unified particle filter based localization approach based on Bluetooth positioning and pedestrian dead reckoning (PDR) method. We call this system as PBIL (PDR for scalable Bluetooth Indoor Localization). The proposed approach overcomes failure in the context of uninterrupted service where Bluetooth technologies lag behind. By coalescing Bluetooth and 3D compass sensor models, we surmount the localizing tribulations and guarantee a preeminent solution for pedestrian indoor localization and navigation.
Keywords :
Bluetooth; particle filtering (numerical methods); PBIL; PDR; bluetooth; bluetooth positioning; indoor localization; pedestrian dead reckoning; positioning methods; sensor models; unified particle filter; uninterrupted service; Bluetooth; Costs; Intelligent sensors; Navigation; Particle filters; Radiofrequency identification; Scalability; Smart phones; Wireless LAN; ZigBee;
Conference_Titel :
Next Generation Mobile Applications, Services and Technologies, 2009. NGMAST '09. Third International Conference on
Conference_Location :
Cardiff, Wales
Print_ISBN :
978-0-7695-3786-3
DOI :
10.1109/NGMAST.2009.43