• DocumentCode
    3559562
  • Title

    RONSARD Radar: Implementation of Dual Polarization on a C-Band Doppler Weather Radar

  • Author

    Scialom, Georges ; Faroux, Jacques ; Giraud, Manuel ; Ney, Richard ; Evaristo, Raquel ; Lemaitre, Yvon ; Viltard, Nicolas

  • Author_Institution
    Centre d´´Etudes des Environnements Terrestre et Planetaires, Inst. Pierre-Simon Laplace, Velizy
  • Volume
    6
  • Issue
    1
  • fYear
    2009
  • Firstpage
    132
  • Lastpage
    136
  • Abstract
    The French C-band meteorological Doppler radar Recherche sur les Orages et Nuages par un Systeme Associe de Radars Doppler (RONSARD) was recently equipped with dual polarization. This modification required, on the one hand, an additional receiver and, on the other hand, a new design for the antenna geometry in order to decrease strongly the sidelobe level. This new radar configuration allows us to choose between two complementary modes: (1) the previous single-polarization mode, still preserved with fast Fourier transform calculations of the first three momentums of the Doppler spectrum, i.e., horizontal (H) reflectivity, radial wind velocity, and wind velocity variance calculated both in precipitation areas and clear air areas (depending on the gate), and (2) the dual-polarization mode with pulse pair processing of H and vertical reflectivities and velocities, differential phase shift, and coherence coefficient. Moreover, both modes work over contiguous gates along each direction, allowing fine radial range resolution. Thanks to the flexibility between these two modes, the RONSARD radar becomes a new major facility aimed at studying the dynamics-microphysics interactions within precipitation and their environment.
  • Keywords
    Doppler radar; atmospheric precipitation; atmospheric techniques; fast Fourier transforms; meteorological radar; wind; AD 1981 to 2006; Doppler spectrum; French C-band meteorological Doppler radar; RONSARD Radar; Recherche sur les Orages et Nuages par un Systeme Associe de Radars Doppler; antenna geometry; atmospheric precipitation; differential phase shift; dual polarization implementation; dynamics-microphysics interactions; fast Fourier transform calculations; horizontal reflectivity; radar configuration; radial range resolution; radial wind velocity; single-polarization mode; Antenna with direct illumination; polarimetric C-band meteorological Doppler radar;
  • fLanguage
    English
  • Journal_Title
    Geoscience and Remote Sensing Letters, IEEE
  • Publisher
    ieee
  • Conference_Location
    12/12/2008 12:00:00 AM
  • ISSN
    1545-598X
  • Type

    jour

  • DOI
    10.1109/LGRS.2008.2008318
  • Filename
    4711141