• DocumentCode
    1018210
  • Title

    UAVSAR: New NASA Airborne SAR System for Research

  • Author

    Rosen, Paul A. ; Hensley, Scott ; Wheeler, Kevin ; Sadowy, Greg ; Miller, Tim ; Shaffer, Scott ; Muellerschoen, Ron ; Jones, Cathleen ; Madsen, Soren ; Zebker, Howard

  • Author_Institution
    California Inst. of Technol., Pasadena
  • Volume
    22
  • Issue
    11
  • fYear
    2007
  • Firstpage
    21
  • Lastpage
    28
  • Abstract
    NASA´s Jet Propulsion Laboratory is currently building a reconfigurable, polarimetric L-band synthetic aperture radar (SAR), specifically designed to acquire airborne repeat track SAR data for differential interferometric measurements. Differential interferometry can provide key deformation measurements, important for studies of earthquakes, volcanoes, and other dynamically changing phenomena. Using precision real-time GPS and a sensor controlled flight management system, the system will be able to fly pre-defined paths with great precision. The expected performance of the flight control system will constrain the flight path to be within a 10 m diameter tube about the desired flight track. The radar will be designed to be operable on a Unpiloted Arial Vehicle (UAV) but will initially be demonstrated on a NASA Gulfstream III. The radar will be fully polarimetric, with a range bandwidth of 80 MHz (2 m range resolution), and will support a 16 km range swath. The antenna will be electronically steered along track to assure that the antenna beam can be directed independently, regardless of the wind direction and speed. Other features supported by the antenna include elevation monopulse and pulse-to-pulse re-steering capabilities that will enable some novel modes of operation. The system will nominally operate at 45,000 feet (13,800 m). The program began as an Instrument Incubator Project (IIP) funded by NASA Earth Science and Technology Office (ESTO).
  • Keywords
    aerospace control; airborne radar; beam steering; radar interferometry; radar polarimetry; remotely operated vehicles; synthetic aperture radar; Instrument Incubator Project; NASA Earth Science and Technology Office; NASA Jet Propulsion Laboratory; NASA airborne SAR system; UAV; UAVSAR; antenna beam; differential interferometric measurement; flight control system; frequency 80 MHz; precision real-time GPS; pulse-to-pulse re-steering capability; reconfigurable polarimetric L-band synthetic aperture radar; repeat track SAR data; sensor controlled flight management system; unpiloted arial vehicle; Directive antennas; Laboratories; NASA; Propulsion; Radar antennas; Radar polarimetry; Radar tracking; Seismic measurements; Synthetic aperture radar; Unmanned aerial vehicles;
  • fLanguage
    English
  • Journal_Title
    Aerospace and Electronic Systems Magazine, IEEE
  • Publisher
    ieee
  • ISSN
    0885-8985
  • Type

    jour

  • DOI
    10.1109/MAES.2007.4408523
  • Filename
    4408523