• DocumentCode
    2286850
  • Title

    Future visual microsensors for mini/micro-UAV applications

  • Author

    Barrows, G.L.

  • Author_Institution
    Centeye Inc., Washington, DC, USA
  • fYear
    2002
  • fDate
    22-24 Jul 2002
  • Firstpage
    498
  • Lastpage
    506
  • Abstract
    New classes of small and micro-sized UAVs, with wingspans on the order of meters and tens of centimeters, respectively, present interesting challenges to the field of autonomous flight enabling sensing and control technologies. There is currently a desire to develop a sensor/control suite that will allow such UAVs to fly through complex environments, such as in an "urban canyon" or underneath a forest canopy, at altitudes of just meters above the ground. The development of such capabilities requires new approaches for perceiving the environment. There is an increasing interest in borrowing ideas from flying animals such as insects, which are able to fly through such environments with high reliability. This has led to the development of optical flow sensing techniques that currently are able to provide such capabilities as altitude control and terrain following. However, more difficult tasks such as flying in the urban canyon or in a forest require advances in image processing that allow obstacles to be reliably detected by a machine vision package weighing tens of grams, including all optics, hardware, and software. A blueprint for such a visual sensor is proposed that makes use of anticipated developments in microelectronic technology. With disciplined "best engineering practices", cellular nonlinear network techniques can make significant contributions to the development of such sensors.
  • Keywords
    aircraft navigation; attitude control; cellular neural nets; image sensors; image sequences; microsensors; military systems; mobile robots; altitude control; autonomous flight; cellular nonlinear network; image processing; image sensor; machine vision; microsensors; optic flow sensing; terrain following; uninhabited air vehicles; Animals; Image motion analysis; Image processing; Insects; Machine vision; Microsensors; Nonlinear optics; Optical control; Optical sensors; Software packages;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Cellular Neural Networks and Their Applications, 2002. (CNNA 2002). Proceedings of the 2002 7th IEEE International Workshop on
  • Print_ISBN
    981-238-121-X
  • Type

    conf

  • DOI
    10.1109/CNNA.2002.1035087
  • Filename
    1035087