Title :
Fingerprinting localization based on 60 GHz impulse radio
Author :
Jingjing Wang; Xiulong Liang; Wei Shi; Qiuna Niu;T. Aaron Gulliver; Xing Liu
Author_Institution :
College of Information Science &
Abstract :
Recently, 60 GHz technology has become a promising alternative for indoor positioning systems because it can provide very accurate temporal and spatial information for precise time of arrival (TOA) estimation. However, non-line-of-sight (NLOS) propagation in indoor environments can significantly degrade the localization accuracy with 60 GHz signals. To reduce the effects of NLOS propagation, a fingerprinting based localization algorithm for 60 GHz impulse radio positioning is presented. Performance results are presented which show that decimeter level accuracy can be obtained in LOS as well as NLOS environments.
Keywords :
"Fingerprint recognition","Accuracy","Databases","Wireless communication","Energy loss","Estimation","Channel estimation"
Conference_Titel :
Communications, Computers and Signal Processing (PACRIM), 2015 IEEE Pacific Rim Conference on
Electronic_ISBN :
2154-5952
DOI :
10.1109/PACRIM.2015.7334886