• DocumentCode
    152776
  • Title

    Remote sensing and 2-D imaging of ionosphere by IONOLAB group

  • Author

    Arikan, F. ; Toker, Cenk ; Sezen, Umut ; Deviren, M. Necat ; Cilibas, Onur ; Arikan, Orhan

  • Author_Institution
    Elektrik ve Elektron. Muhendisligi Bolumu, Hacettepe Univ., Ankara, Turkey
  • fYear
    2014
  • fDate
    23-25 April 2014
  • Firstpage
    1520
  • Lastpage
    1523
  • Abstract
    In this study, research activities of IONOLAB group on remote sensing and 2-D imaging of ionosphere in the last 10 years will be summarized. In TUBITAK EEEAG 105E171 and 109E055 projects, a novel Total Electron Content (TEC) estimation method, IONOLAB-TEC, is developed using the dual frequency Global Positioning System (GPS) pseudo range and phase delay recordings. The IONOLAB-TEC computation is provided from www.ionolab.org as an important and unique Space Weather service that can estimate robust, reliable and accurate single station TEC values. The sparse estimates of GPS-TEC in space and time are interpolated regionally and globally and TNPGN-Active IONOLAB-TEC values are mapped using novel space-time interpolation methods. Ionospheric climatic model IRI-Plas is used as a background for fast and robust electron density distributions first time in literature. Critical Ionosperic parameters are interpolated to obtain global and regional distributions. Critical frequency and height maps are provided in www.ionolab.org as another Space Weather Service. The important contributions of IONOLAB group will continue in TUBITAK 112E568 project.
  • Keywords
    Global Positioning System; interpolation; ionospheric disturbances; ionospheric techniques; remote sensing; IONOLAB group; IONOLAB-TEC computation; IRI-Plas model; Space Weather service; TNPGN-Active IONOLAB-TEC value mapping; TUBITAK EEEAG 105E171 project; TUBITAK EEEAG 109E055 project; critical frequency; dual frequency global positioning system pseudo range; height maps; ionosphere 2D imaging; ionospheric climatic model; phase delay recordings; remote sensing; robust electron density distributions; single station TEC value estimation; space-time interpolation methods; sparse GPS-TEC estimation; total electron content estimation method; Abstracts; Conferences; Estimation; Global Positioning System; Ionosphere; Meteorology; Signal processing; Computerized Ionospheric Tomography; Ionosphere; Mapping; TNPGN-Active; Total Electron Content;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Signal Processing and Communications Applications Conference (SIU), 2014 22nd
  • Conference_Location
    Trabzon
  • Type

    conf

  • DOI
    10.1109/SIU.2014.6830530
  • Filename
    6830530