• DocumentCode
    2891467
  • Title

    Parallel algorithms and processing architectures for space-time adaptive processing

  • Author

    Farina, A. ; Timmoneri, L.

  • Author_Institution
    Syst. Anal. Group, Rome, Italy
  • fYear
    1996
  • fDate
    8-10 Oct 1996
  • Firstpage
    770
  • Lastpage
    774
  • Abstract
    This paper describes methodologies for the on-line calculation of the weights to be used in the linear combination of the received radar data by a set of N antennas and M pulse repetition intervals (PRIs) for the derivation of the adapted space-time filter output. The numerically robust and computationally efficient QR-decomposition is used to derive the so called MVDR (minimum variance distortionless response) and lattice algorithms. Both algorithms are represented as a systolic computational flow graph. The MVDR is able to produce more than one adapted beam focused along different DOAs and Doppler frequencies in the radar surveillance volume. The lattice algorithm offers a computational saving; in fact its computational burden is O(N2M) in lieu of O(N2M2). A comprehensive analysis of the numerical robustness of the algorithms is presented when the CORDIC-algorithm is used to compute the QR decomposition (QRD). Benchmarks on general purpose parallel computers and on a VLSI CORDIC (co-ordinate rotation digital computer) board are presented
  • Keywords
    VLSI; adaptive radar; adaptive signal processing; array signal processing; digital arithmetic; parallel algorithms; radar computing; radar signal processing; signal flow graphs; systolic arrays; CORDIC-algorithm; DOA; Doppler frequencies; MVDR; QR-decomposition; STAP; adapted beam; adapted space-time filter output; computational cost; lattice algorithms; linear combination; minimum variance distortionless respons; numerical robustness; on-line calculation; parallel algorithms; processing architectures; pulse repetition intervals; radar surveillance; received radar data; space-time adaptive processing; systolic computational flow graph; Adaptive arrays; Concurrent computing; Flow graphs; Lattices; Nonlinear filters; Parallel algorithms; Radar antennas; Receiving antennas; Robustness; Spaceborne radar;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Radar, 1996. Proceedings., CIE International Conference of
  • Conference_Location
    Beijing
  • Print_ISBN
    0-7803-2914-7
  • Type

    conf

  • DOI
    10.1109/ICR.1996.574610
  • Filename
    574610