• DocumentCode
    1177291
  • Title

    Clutter Suppression by Complex Weighting of Coherent Pulse Trains

  • Author

    Rummler, W.D.

  • Author_Institution
    Bell Telephone Laboratories, Inc Whippany, N. J.
  • Issue
    6
  • fYear
    1966
  • Firstpage
    689
  • Lastpage
    699
  • Abstract
    Uniform coherent pulse trains offer a practical solution to the problem of designing a radar signal possessing both high range and range-rate resolution. The Doppler sensitivity provides some rejection of off-Doppler (clutter) returns in the matched filter receiver. This paper considers the use of a processor in which members of the received pulse train are selectively weighted in amplitude and phase to improve clutter suppression. The techniques described are particularly suitable for rejecting interference entering the processor through ambiguous responses (range sidelobes) of the signal. The complex weights which are derived are optimum in the sense that they produce the maximum clutter suppression for a given detection efficiency. In determining these weights, it is assumed that the distribution of clutter in range and range rate relative to targets of interest is known. Thus, clutter suppression is achieved by reducing the sidelobe levels in specified regions of the receiver response. These techniques are directly applicable to array antennas; the analogous antenna problem would be to reduce sidelobe levels in a particular sector while preserving gain. Complex weighting is most successful when the clutter is limited in both range and velocity.
  • Keywords
    Clutter; Doppler radar; Frequency response; Matched filters; PSNR; Radar signal processing; Signal design; Signal resolution; Telephony; Voltage; Clutter; coherence; pulse trains; radar; resolution; signal processing; suppression; weighting;
  • fLanguage
    English
  • Journal_Title
    Aerospace and Electronic Systems, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9251
  • Type

    jour

  • DOI
    10.1109/TAES.1966.4501963
  • Filename
    4501963