High-Accuracy GPS and GLONASS Positioning by Multipath Mitigation using Omnidirectional Infrared Camera

被引:0
|
作者
Suzuki, Taro [1 ]
Kitamura, Mitsunori [1 ]
Amano, Yoshiharu [2 ]
Hashizume, Takumi [2 ]
机构
[1] Waseda Univ, Grad Sch Sci & Engn, Tokyo, Japan
[2] Waseda Univ, Adv Res Inst Sci & Engn, Tokyo, Japan
关键词
D O I
暂无
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
This paper describes a precision positioning technique that can be applied to vehicles or mobile robots in urban or leafy environments. Currently, the availability of satellite positioning is anticipated to improve because of the presence of various positioning satellites such as GPS of the U.S., GLONASS of Russia and GALILEO of Europe. However, because of the serious impact of multipath on their positioning accuracy in urban or leafy areas, such improvements in the availability of satellite positioning do not necessarily also facilitate high precision positioning. Our proposed technique mitigates GPS and GLONASS multipath by means of an omnidirectional infrared (IR) camera that can eliminate the need for invisible satellites by using IR images. With an IR camera, the sky appears distinctively dark. This facilitates the detection of the borderline between the sky and the surrounding buildings, which are captured in white, because of the difference in the atmospheric transmittance rates between visible light and IR rays. The proposed technique can automatically and robustly mitigate GPS and GLONASS multipath by excluding the invisible satellites. Positioning evaluation was carried out only with visible satellites that have less multipath errors and without using invisible satellites. The evaluation results confirm the effectiveness of the proposed technique and the feasibility of its highly accurate positioning.
引用
收藏
页数:6
相关论文
共 50 条
  • [31] Aircraft positioning using DGNSS technique for GPS and GLONASS data
    Krasuski, Kamil
    Cwiklak, Janusz
    SENSOR REVIEW, 2020, 40 (05) : 559 - 575
  • [32] Collaborative High-Accuracy Localization in Mobile Multipath Environments
    Ekambaram, Venkatesan N.
    Ramchandran, Kannan
    Sengupta, Raja
    IEEE TRANSACTIONS ON VEHICULAR TECHNOLOGY, 2016, 65 (10) : 8414 - 8422
  • [33] Polychromatic light interferometer for high-accuracy positioning
    Dobosz, M
    Matsumoto, H
    Seta, K
    Iwasaki, S
    OPTICS AND LASERS IN ENGINEERING, 1996, 24 (01) : 43 - 56
  • [34] LASER SYSTEM FOR HIGH-ACCURACY ALIGNMENT AND POSITIONING
    BURSANESCU, L
    VASILIU, V
    REVIEW OF SCIENTIFIC INSTRUMENTS, 1994, 65 (05): : 1686 - 1690
  • [35] Network-based RTK-GPS for nationwide high-accuracy positioning and navigation in japan
    Saito, M
    Ohmura, Y
    Onoda, A
    Nishikawa, K
    Shibahara, Y
    Higuchi, H
    SATELLITE NAVIGATION SYSTEMS: POLICY, COMMERCIAL AND TECHNICAL INTERACTION, 2003, 8 : 151 - 158
  • [36] High-accuracy calibration and correction of camera system
    Quan, Tiehan
    Yu, Qifeng
    2000, Science Press (26):
  • [37] A High-Accuracy Image Composition System Using a Mobile Robotic Camera
    Tsuda, Takao
    Okuda, Makoto
    Mutou, Kazutoshi
    Yanagisawa, Hitoshi
    Kubo, Noriyoshi
    Date, Yoshikatsu
    SMPTE MOTION IMAGING JOURNAL, 2008, 117 (03): : 30 - 37
  • [38] Multipath Mitigation in High Precision GPS Systems Using Artificial Magnetic Conductors
    Khaleel, Haider R.
    Al-Rizzo, Hussain
    Isaac, Ayman
    Bihnam, Ayad
    2014 IEEE ANTENNAS AND PROPAGATION SOCIETY INTERNATIONAL SYMPOSIUM (APSURSI), 2014, : 432 - 433
  • [39] Atmospheric density determination using high-accuracy satellite GPS data
    REN TingLing
    MIAO Juan
    LIU SiQing
    Science China(Technological Sciences), 2018, (02) : 204 - 211
  • [40] Atmospheric density determination using high-accuracy satellite GPS data
    REN TingLing
    MIAO Juan
    LIU SiQing
    Science China(Technological Sciences), 2018, 61 (02) : 204 - 211