• DocumentCode
    1951018
  • Title

    Beamspace space-time adaptive processing for conformal array radars

  • Author

    Zhang, Yuhong ; Kim, Kyungjung ; Hajjari, Abdelhak ; Schneible, Richard ; Himed, Braham

  • Author_Institution
    Stiefvater Consultants, Marcy, NY, USA
  • fYear
    2006
  • fDate
    24-27 April 2006
  • Abstract
    This paper presents a beamspace space-time adaptive processing (STAP) approach to conformal array radar applications. The spatial channels in beamspace STAP are designed to have the same phase center, but different beam orientations and/or shapes. The joint-domain localized (JDL) algorithm and ΣΔ-STAP (employing sum and difference beams) are two special cases of beamspace-STAP. This paper develops a theory for a generalized beamspace STAP and applies it to conformal arrays. The desired beam pattern characteristics for beamspace STAP are identified with supportive examples. In practice, the beam pattern sidelobe structure is not controllable because of near-field effects, mutual coupling, and various other errors. A practically feasible design that employs a low sidelobe mainbeam combined with a few non-tapered beams (sum and/or difference beams) is developed in this paper. An iterative method is used to synthesize the desired conformal array patterns for beamspace-STAP. Several beamspace-STAP examples for a cylindrical array and a dome-shaped array, as representatives of conformal arrays, perform very well and the results are consistent with the theory.
  • Keywords
    adaptive radar; antenna phased arrays; antenna radiation patterns; conformal antennas; iterative methods; phased array radar; radar antennas; space-time adaptive processing; telecommunication channels; ΣΔ-STAP; JDL; STAP; beam pattern characteristics; beamspace space-time adaptive processing approach; conformal array radar application; feasible design; iterative method; joint-domain localized algorithm; spatial channel; Adaptive arrays; Clutter; Linear antenna arrays; Mutual coupling; Planar arrays; Radar applications; Shape; Signal processing algorithms; Spaceborne radar; Unmanned aerial vehicles;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Radar, 2006 IEEE Conference on
  • Print_ISBN
    0-7803-9496-8
  • Type

    conf

  • DOI
    10.1109/RADAR.2006.1631854
  • Filename
    1631854