DocumentCode
2150537
Title
A time-based passive source localization system for narrow-band signal
Author
Li, Zan ; Braun, Torsten ; Dimitrova, Desislava C.
Author_Institution
Institute of Computer Science and Applied Mathematics, University of Bern, Switzerland
fYear
2015
fDate
8-12 June 2015
Firstpage
4599
Lastpage
4605
Abstract
Time-based indoor localization has been investigated for several years but the accuracy of existing solutions is limited by several factors, e.g., imperfect synchronization, signal bandwidth and indoor environment. In this paper, we compare two time-based localization algorithms for narrow-band signals, i.e., multilateration and fingerprinting. First, we develop a new Linear Least Square (LLS) algorithm for Differential Time Difference Of Arrival (DTDOA). Second, fingerprinting is among the most successful approaches used for indoor localization and typically relies on the collection of measurements on signal strength over the area of interest. We propose an alternative by constructing fingerprints of fine-grained time information of the radio signal. We offer comprehensive analytical discussions on the feasibility of the approaches, which are backed up by evaluations in a software defined radio based IEEE 802.15.4 testbed. Our work contributes to research on localization with narrow-band signals. The results show that our proposed DTDOA-based LLS algorithm obviously improves the localization accuracy compared to traditional TDOA-based LLS algorithm but the accuracy is still limited because of the complex indoor environment. Furthermore, we show that time-based fingerprinting is a promising alternative to power-based fingerprinting.
Keywords
Accuracy; Distance measurement; Global Positioning System; IEEE 802.15 Standard; Mathematical model; Signal processing algorithms; Synchronization;
fLanguage
English
Publisher
ieee
Conference_Titel
Communications (ICC), 2015 IEEE International Conference on
Conference_Location
London, United Kingdom
Type
conf
DOI
10.1109/ICC.2015.7249048
Filename
7249048
Link To Document