Database Calibration for Outdoor Wi-Fi Positioning System

被引:6
作者
Huang, Yuyang [1 ]
Hsu, Li-Ta [1 ]
Gu, Yanlei [1 ]
Wang, Haitao [1 ]
Kamijo, Shunsuke [1 ]
机构
[1] Univ Tokyo, Tokyo 1538505, Japan
关键词
Wi-Fi; fingerprint; positioning; urban; GPS; 3D building model; KWNN; ERROR-CORRECTION; GPS;
D O I
10.1587/transfun.E99.A.1683
中图分类号
TP3 [计算技术、计算机技术];
学科分类号
0812 ;
摘要
The limitation of the GPS in urban canyon has led to the rapid development of Wi-Fi positioning system (WPS). The fingerprint based WPS could be divided into calibration and positioning stages. In calibration stage, several grid points (GPs) are selected, and their position tags and featured access points (APs) are collected to build fingerprint database. In positioning stage, real time measurement of APs are compared with the feature of each GP in the database. The k weighted nearest neighbors (KWNN) algorithm is used as pattern matching algorithm to estimate the final positioning result. However, the performance of outdoor fingerprint-based WPS is not good enough for pedestrian navigation. The main challenge is to build a robust fingerprint database. The received number of APs in outdoor environments has large variation. In addition, positioning result estimated by GPS receiver is used as position tag of each GP to automatically build the fingerprint database. This paper studies the lifecycle of fingerprint database in outdoor environment. We also shows that using long time collected data to build database could improve the positioning accuracy. Moreover, a new 3D-GNSS (3D building models aided GNSS) positioning method is used to provide accurate position tags. In this paper, the fingerprint-based WPS has been developed in an outdoor environment near the center of Tokyo city. The proposed WPS can achieve around 17 meters positioning accuracy in urban canyon.
引用
收藏
页码:1683 / 1690
页数:8
相关论文
共 23 条
[1]  
Aida Mahiddin N., 2013, INT J MULTIMEDIA UBI, V8, P303, DOI DOI 10.14257/IJMUE.2013.8.5.30
[2]  
[Anonymous], 2010, GLOBAL POSITIONING S
[3]  
[Anonymous], 2006, Understanding GPS Principles and Applications Second Edition
[4]  
[Anonymous], P ION GNSS 2004 LONG
[5]  
Bahl P., 2000, Proceedings IEEE INFOCOM 2000. Conference on Computer Communications. Nineteenth Annual Joint Conference of the IEEE Computer and Communications Societies (Cat. No.00CH37064), P775, DOI 10.1109/INFCOM.2000.832252
[6]   Accuracy characterization for metropolitan-scale Wi-Fi localization [J].
Cheng, YC ;
Chawathe, Y ;
LaMarca, A ;
Krumm, J .
PROCEEDINGS OF THE THIRD INTERNATIONAL CONFERENCE ON MOBILE SYSTEMS, APPLICATIONS, AND SERVICES (MOBISYS 2005), 2005, :233-245
[7]  
Henniges R., 2012, SERV CETR NETW SEM W
[8]   3D building model-based pedestrian positioning method using GPS/GLONASS/QZSS and its reliability calculation [J].
Hsu, Li-Ta ;
Gu, Yanlei ;
Kamijo, Shunsuke .
GPS SOLUTIONS, 2016, 20 (03) :413-428
[9]   NLOS Correction/Exclusion for GNSS Measurement Using RAIM and City Building Models [J].
Hsu, Li-Ta ;
Gu, Yanlei ;
Kamijo, Shunsuke .
SENSORS, 2015, 15 (07) :17329-17349
[10]   Multipath mitigation and NLOS detection using vector tracking in urban environments [J].
Hsu, Li-Ta ;
Jan, Shau-Shiun ;
Groves, Paul D. ;
Kubo, Nobuaki .
GPS SOLUTIONS, 2015, 19 (02) :249-262