DocumentCode :
3602156
Title :
Sectorized Antenna-based DoA Estimation and Localization: Advanced Algorithms and Measurements
Author :
Werner, Janis ; Jun Wang ; Hakkarainen, Aki ; Gulati, Nikhil ; Patron, Damiano ; Pfeil, Doug ; Dandekar, Kapil ; Cabric, Danijela ; Valkama, Mikko
Author_Institution :
Dept. of Electron. & Commun. Eng., Tampere Univ. of Technol., Tampere, Finland
Volume :
33
Issue :
11
fYear :
2015
Firstpage :
2272
Lastpage :
2286
Abstract :
Sectorized antennas are a promising class of antennas for enabling direction-of-arrival (DoA) estimation and successive transmitter localization. In contrast to antenna arrays, sectorized antennas do not require multiple transceiver branches and can be implemented using a single RF front-end only, thus reducing the overall size and cost of the devices. However, for good localization performance the underlying DoA estimator is of uttermost importance. In this paper, we therefore propose a novel high performance DoA estimator for sectorized antennas that does not require cooperation between the transmitter and the localizing network. The proposed DoA estimator is broadly applicable with different sectorized antenna types and signal waveforms, and has low computational complexity. Using computer simulations, we show that our algorithm approaches the respective Cramer-Rao lower bound for DoA estimation variance if the signal-to-noise ratio (SNR) is moderate to large and also outperforms the existing estimators. Moreover, we also derive analytical error models for the underlying DoA estimation principle considering both free space as well as multipath propagation scenarios. Furthermore, we also address the fusion of the individual DoA estimates into a location estimate using the Stansfield algorithm and study the corresponding localization performance in detail. Finally, we show how to implement the localization in practical systems and demonstrate the achievable performance using indoor RF measurements obtained with practical sectorized antenna units.
Keywords :
antenna arrays; computational complexity; direction-of-arrival estimation; directive antennas; indoor radio; multipath channels; radio transceivers; radiofrequency measurement; radiowave propagation; Cramer-Rao lower bound; Stansfield algorithm; direction-of-arrival estimation; directional antenna; free space propagation scenario; indoor RF measurement; location estimation; low computational complexity; multipath propagation scenario; overall cost reduction; overall size reduction; sectorized antenna-based DoA estimation; sectorized antenna-based DoA localization; signal waveform; signal-to-noise ratio; single RF front-end; successive transmitter localization; Antenna arrays; Antenna measurements; Computational modeling; Direction-of-arrival estimation; Estimation; Signal to noise ratio; Angle-of-arrival; Stansfield algorithm; cognitive radio; direction-of-arrival estimation; directional antennas; leaky-wave antennas; localization; location-awareness; measurements; reconfigurable antennas; sectorized antennas; sectorized antennas,;
fLanguage :
English
Journal_Title :
Selected Areas in Communications, IEEE Journal on
Publisher :
ieee
ISSN :
0733-8716
Type :
jour
DOI :
10.1109/JSAC.2015.2430292
Filename :
7102725
Link To Document :
بازگشت