• DocumentCode
    2577910
  • Title

    NASA/JPL airborne three-frequency polarimetric/interferometric SAR system

  • Author

    Kim, Y. ; Lou, Y. ; van Zyl, J. ; Maldonado, L. ; Miller, T. ; Sato, T. ; Skotnicki, W.

  • Author_Institution
    Jet Propulsion Lab., California Inst. of Technol., Pasadena, CA, USA
  • Volume
    3
  • fYear
    1996
  • fDate
    27-31 May 1996
  • Firstpage
    1612
  • Abstract
    The NASA/JPL airborne SAR system (popularly known as “AIRSAR”) has been flown aboard the NASA Ames Research Center DC-8 since 1987. AIRSAR is a three frequency (P-, L-, and C-bands) polarimetric radar with the interferometric capability. Modes of operation are possible with the AIRSAR system, it has three basic operational modes (polarimetric, across track interferometry, and along track interferometry). The AIRSAR hardware consists of RFE (RF Electronics), digital electronics, antenna, control computer, on-board processor, and power distribution subsystems. A single DCG (Digital Chirp Generator) generates the chirp waveform and it is up-converted to L-band. Subsequent up- and down- conversions produce C- and P- band chirp signals, respectively. The return echo is amplified by LNA (Low Noise Amplifier) and digitized by 8-bit ADC (Analog-to-Digital Converter). The digital data from six channels are multiplexed and stored on tape using the high density digital recorder. During the AIRSAR mission, a real time correlator produces low resolution imagery to assess the general health of the radar and to verify that the correct area has been imaged. Data processing to produce high quality image products happens in the weeks and months following a flight campaign after proper calibration parameters are generated. The current integrated processor can process both polarimetric and interferometric data. The authors present detailed mission description, hardware configuration, and data processing
  • Keywords
    FM radar; airborne radar; geophysical equipment; geophysical signal processing; geophysical techniques; radar equipment; radar imaging; radar polarimetry; remote sensing by radar; synthetic aperture radar; AIRSAR; C-band; Digital Chirp Generator; InSAR; L-band; NASA JPL airborne three-frequency polarimetric radar; P-band; RF Electronics; SAR; SLAR; UHF radar; airborne radar; apparatus; chirp waveform; data processing; digital electronics; equipment; geophysical measurement technique; hardware; image processing; instrument; interferometric SAR; land surface; microwave radar; multifrequency radar; radar antenna; radar imaging; radar polarimetry; radar remote sensing; synthetic aperture radar; terrain mapping; Chirp; Data processing; Digital control; Hardware; Interferometry; NASA; Radar antennas; Radar polarimetry; Radar tracking; Radio frequency;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Geoscience and Remote Sensing Symposium, 1996. IGARSS '96. 'Remote Sensing for a Sustainable Future.', International
  • Conference_Location
    Lincoln, NE
  • Print_ISBN
    0-7803-3068-4
  • Type

    conf

  • DOI
    10.1109/IGARSS.1996.516747
  • Filename
    516747