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Processing parameter generator for synthetic aperture radar

  • US 4,985,704 A
  • Filed: 11/14/1988
  • Issued: 01/15/1991
  • Est. Priority Date: 01/17/1987
  • Status: Expired due to Fees
First Claim
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1. A signal processor for synthetic aperture radar carried by a moving vehicle including an antenna, the radar using a beam which has a centre and is scanned over a surface to be imaged and mapped so as to trace out thereon a swath having near, far and centre positions, which processor comprises(a) a processing parameter generator including processing blocks, the processing parameter generator serving for computation of processor filter parameters from the vehicle motion and antenna geometry as a continuously updated function of time,(b) range compression means comprising(i) pulse FFT means for performing an FFT on pulse echoes,(ii) pulse replica multiplication means to effect pulse correlation,(iii) squint compensation multiplication means to effect second order migration correction, and(iv) inverse FFT means for performing an inverse FFT on the multiplied and compensated spectral data;

  • (c) azimuth compression means comprising(i) row FFT means for performing an FFT on rows of data selected at constant range from overlapping blocks of range compressed data,(ii) azimuth replica evaluator means, comprising range and phase polynomial evaluators and a complex exponentiator,(iii) azimuth spectral buffer means, comprising a bank of storage to contain an adequately large number of row transforms,(iv) data selection means comprising an interpolator to effect selection of data along curves in the spectral buffer means according to values computed by the range polynomial evaluator,(v) azimuth replica multiplication means to effect multiplication of the selected data with the complex data generated by the phase polynomical evaluators, and(vi) inverse FFT means to effect the inverse transform of rows of the processed data; and

    (d) image formation means comprising image resampling and buffering means to effect image block geometric and phase discontinuity removal and image collation.

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