• DocumentCode
    1984259
  • Title

    Radar detection of co-operative targets using dual polarized radar-a multidimensional, multichannel detection problem

  • Author

    Macikunas, A. ; Haykin, S.

  • Author_Institution
    Commun. Res. Lab., McMaster Univ., Hamilton, Ont., Canada
  • fYear
    1989
  • fDate
    6-8 Sep 1989
  • Firstpage
    41
  • Abstract
    Summary form only given, as follows. In certain circumstances, it is not possible to improve radar detection performance using conventional radar techniques, i.e. increased power, shorter pulse length, coherence, etc. If the radar polarization characteristics of the target are sufficiently different from those of the surrounding clutter environment, it is possible to improve detection through the use of polarization-domain processing. The polarization state (PS) can be viewed as adding new dimensions to the conventional 1-D echo amplitude normally used for detection. The application of a multidimensional, multichannel distance metric in the amplitude and polarization domains to detect cooperative retroreflectors with distinctive radar polarization characteristics in man-made and natural clutter environments is described. The results are based on real data collected using a partially coherent X-band weather radar system
  • Keywords
    electromagnetic wave polarisation; radar applications; radar clutter; radar systems; signal detection; 1-D echo amplitude; X-band weather radar system; amplitude domain; clutter environment; cooperative targets; dual polarized radar; multichannel detection; multichannel distance metric; partially coherent radar; polarization state; polarization-domain processing; radar detection; radar polarization characteristics; Meteorological radar; Multidimensional systems; Polarization; Radar applications; Radar clutter; Radar detection; Radar scattering;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Multidimensional Signal Processing Workshop, 1989., Sixth
  • Conference_Location
    Pacific Grove, CA
  • Type

    conf

  • DOI
    10.1109/MDSP.1989.97010
  • Filename
    97010