• DocumentCode
    3053313
  • Title

    A robust and precise 3D indoor positioning system for harsh environments

  • Author

    Blankenbach, Jorg ; Norrdine, Abdelmoumen ; Hellmers, Hendrik

  • Author_Institution
    Inst. of Geodesy, RWTH Aachen Univ., Aachen, Germany
  • fYear
    2012
  • fDate
    13-15 Nov. 2012
  • Firstpage
    1
  • Lastpage
    8
  • Abstract
    In recent years there has been a considerable research on the development of indoor positioning systems. Several kinds of technologies such as ultrasonic, UWB, WLAN, optical waves and hybrid solutions were utilized already. However, using these technologies many difficulties arise in indoor environments due to none line of sight (NLoS) and multipath errors. In this paper, the realization and the evaluation of a 3D indoor localization system, which is robust for harsh and NLoS environments is presented. The positioning system is Direct Current (DC) magnetic based, shows no multipath effects and has excellent characteristics for penetrating various obstacles. To eliminate additional interference fields (e.g. earth´s magnetic field, electrical disturbances) a differential measurement principle and adaptive noise suppression algorithms are used. In the case of the deployment in smaller areas, even smart phones equipped with embedded low cost sensors can be utilized as mobile station. A real time 3D position estimation with an accuracy up to 50 cm is achievable by setting up only three magnetic coils inside or around the building. In order to analyze existing systematic errors, a simple calibration procedure has been implemented. The calibration routine reduces the systematic errors, which leads to improved system´s positioning accuracy up to 10 cm.
  • Keywords
    indoor communication; interference (signal); navigation; NLoS environments; adaptive noise suppression algorithms; calibration routine; differential measurement principle; direct current magnetic based environments; embedded low cost sensors; harsh environments; interference fields; magnetic coils; mobile station; multipath errors; none line of sight; precise 3D indoor positioning system; real time 3D position estimation; smart phones; systematic errors; Adaptive optics; Coils; Magnetic field measurement; Mobile communication; Optical sensors; Position measurement; Wireless LAN; Adaptive Filtering; Indoor Positioning; Localization; Magnetic Indoor Local Positioning System;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Indoor Positioning and Indoor Navigation (IPIN), 2012 International Conference on
  • Conference_Location
    Sydney, NSW
  • Print_ISBN
    978-1-4673-1955-3
  • Type

    conf

  • DOI
    10.1109/IPIN.2012.6418863
  • Filename
    6418863