• DocumentCode
    1388850
  • Title

    The Control System of a Distributed Aperture Imaging Testbed

  • Author

    Ni, Mel ; Aubrun, Jean-Noel ; Bishop, Martin ; Byler, Eric ; Hamilton, Howard H. ; Lorell, Kenneth R. ; Roth, Don ; Thatcher, John

  • Author_Institution
    Adv. Technol. Center, Lockheed Martin Space Syst. Co., Palo Alto, CA, USA
  • Volume
    18
  • Issue
    6
  • fYear
    2010
  • Firstpage
    1338
  • Lastpage
    1344
  • Abstract
    Star-9 is an experimental demonstration of distributed-aperture imaging built at the Lockheed Martin Advanced Technology Center. White light from a scene generator enters an array of nine telescopes and is combined at a focused image plane. Relative aberrations from each telescope are regulated by a control system using phase diversity and active relay mirrors. A Weiner filter is applied to the image, and the resulting angular resolution and image quality are nearly diffraction-limited with the diameter of the array. The control system takes estimates from the phase diversity algorithm and uses them to command mirrors to adjust tip, tilt, and piston in each telescope. Each active mirror has inductive position sensors for local position control. The mirrors are actuated by picomotors and inchworm motors. In addition to tip/tilt/piston errors, the control system is equipped to correct for pupil geometry and rotation errors, and to perform field of regard steering. In this paper, we present details on the control system´s local sensing, control law synthesis, and precision actuation methodology. We also describe the incorporation of phase diversity and automated phasing algorithms with the control system and give performance results.
  • Keywords
    Wiener filters; actuators; distributed control; image resolution; optical control; position control; sensors; telescopes; Lockheed Martin advanced technology center; Star-9 imaging; Weiner filter; active relay mirrors; actuation methodology; angular resolution; distributed aperture imaging testbed; field-of-regard steering; focused image plane; image quality; inchworm motors; inductive position sensors; phase diversity algorithm; picomotors; piston command; pupil geometry; rotation errors; telescopes; tilt command; tip command; Apertures; Automatic control; Control system synthesis; Control systems; Error correction; Mirrors; Pistons; Space technology; System testing; Telescopes; Active optics control system; Fizeau imaging system; distributed aperture; multiple telescope array; phased array telescope;
  • fLanguage
    English
  • Journal_Title
    Control Systems Technology, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1063-6536
  • Type

    jour

  • DOI
    10.1109/TCST.2009.2038485
  • Filename
    5393014