• DocumentCode
    1449659
  • Title

    The SHAllow RADar (SHARAD) Onboard the NASA MRO Mission

  • Author

    Croci, Renato ; Seu, Roberto ; Flamini, Enrico ; Russo, Enrico

  • Author_Institution
    BU Obs. Syst. & Radar, Thales Alenia Space Italia, Rome, Italy
  • Volume
    99
  • Issue
    5
  • fYear
    2011
  • fDate
    5/1/2011 12:00:00 AM
  • Firstpage
    794
  • Lastpage
    807
  • Abstract
    This paper describes the mission concepts, design, and achievements of the Italian Space Agency (ASI)-provided Mars SHAllow RADar (SHARAD) sounder high-frequency (HF) sounding radar, used onboard the National Aeronautics and Space Administration (NASA) Mars Reconnaissance Orbiter (MRO) Spacecraft. Its goals are the detection of liquid or solid water below the surface, and the mapping of subsurface geologic structures. Following a brief overview of the MRO mission and of its main science objectives, the paper introduces the basic principles of operation of the radar sounder, and addresses the major design issues faced by such a system. The greatest challenges faced in the design are the control of the interference from off-nadir echoes and the need for a high signal fidelity over a very large fractional bandwidth. The core of the paper is devoted to describing how the above problems have been tackled in the design of the SHARAD instrument, and the main characteristics of its architecture. The two key features of the instrument system design are 1) generation of the transmitted signal directly at the transmitted frequency; and 2) sampling performed directly at the radio frequency (by means of a subsampling technique). The careful design of these features, intended to keep the analog signal path very simple, minimizes distortions and stability problems. An overview of the calibration approach of both the system impulse response and the antenna gain at nadir versus solar array position, an assessment of the in-flight performance of the instrument, and a short summary of the achieved science results are also provided.
  • Keywords
    Mars; calibration; ground penetrating radar; planetary remote sensing; planetary surfaces; remote sensing by radar; space vehicles; spaceborne radar; Italian Space Agency; MRO spacecraft; Mars Reconnaissance Orbiter; Martian surface; NASA MRO mission; National Aeronautics and Space Administration; SHARAD instrument; SHARAD sounder; analog signal path; fractional bandwidth; ground penetrating radar; high signal fidelity; high-frequency sounding radar; instrument in-flight performance; instrument system design; interference control; liquid water; mission concepts; off-nadir echoes; radar sounder; radio frequency; shallow radar; solar array position; solid water; spaceborne radar; subsurface geologic structures; Instruments; Mars; NASA; Orbits; Space exploration; Space vehicles; Spaceborne radar; Surface topography; Calibration; clutter; ground penetrating radar (GPR); spaceborne radar;
  • fLanguage
    English
  • Journal_Title
    Proceedings of the IEEE
  • Publisher
    ieee
  • ISSN
    0018-9219
  • Type

    jour

  • DOI
    10.1109/JPROC.2010.2104130
  • Filename
    5713217