• DocumentCode
    1090568
  • Title

    Doppler Compensation & Single Pulse Imaging using Adaptive Pulse Compression

  • Author

    Blunt, Shannon D. ; Shackelford, Aaron K. ; Gerlach, Karl ; Smith, Kevin J.

  • Author_Institution
    Univ. of Kansas, Lawrence, KS
  • Volume
    45
  • Issue
    2
  • fYear
    2009
  • fDate
    4/1/2009 12:00:00 AM
  • Firstpage
    647
  • Lastpage
    659
  • Abstract
    The effects of target Doppler are addressed in relation to adaptive receive processing for radar pulse compression. To correct for Doppler-induced filter mismatch over a single pulse, the Doppler-compensated adaptive pulse compression (DC-APC) algorithm is presented whereby the respective Doppler shifts for large target returns are jointly estimated with the illuminated range profile and subsequently incorporated into the original APC adaptive receive filter formulation. As a result, the Doppler-mismatch-induced range sidelobes can be suppressed thereby regaining a significant portion of the sensitivity improvement that is possible when applying adaptive pulse compression (APC) without the existence of significant Doppler mismatch. In contrast, instead of compensating for Doppler mismatch, the single pulse imaging (SPI) algorithm generalizes the APC formulation for a bank of Doppler-shifted matched filters thereby producing a sidelobe-suppressed range-Doppler image from the return signal of a single radar pulse which is applicable for targets with substantial variation in Doppler. Both techniques are based on the recently proposed APC algorithm and its generalization, the multistatic adaptive pulse compression (MAPC) algorithm, which have been shown to be effective for the suppression of pulse compression range sidelobes thus dramatically increasing the sensitivity of pulse compression radar.
  • Keywords
    Doppler radar; pulse compression; radar imaging; Doppler compensation; Doppler induced filter mismatch; adaptive pulse compression; adaptive receive processing; radar pulse compression; respective Doppler shifts; single pulse imaging; target Doppler; Adaptive filters; Doppler radar; Doppler shift; Matched filters; Phase detection; Pulse compression methods; Pulse modulation; Radar detection; Radar imaging; Radar scattering;
  • fLanguage
    English
  • Journal_Title
    Aerospace and Electronic Systems, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9251
  • Type

    jour

  • DOI
    10.1109/TAES.2009.5089547
  • Filename
    5089547