• DocumentCode
    2969580
  • Title

    A novel 1-gram insect based device measuring visual motion along 5 optical directions

  • Author

    Roubieu, Frédéric L. ; Expert, Fabien ; Boyron, Marc ; Fuschlock, Benoît-Jérémy ; Viollet, Stéphane ; Ruffier, Franck

  • Author_Institution
    Biorobotics Dept., Aix-Marseille Univ., Marseille, France
  • fYear
    2011
  • fDate
    28-31 Oct. 2011
  • Firstpage
    687
  • Lastpage
    690
  • Abstract
    Autopilots for micro aerial vehicles (MAVs) with a maximum permissible avionic payload of only a few grams need lightweight, low-power sensors to be able to navigate safely when flying through unknown environments. To meet these demanding specifications, we developed a simple functional model for an Elementary Motion Detector (EMD) circuit based on the common housefly´s visual system. During the last two decades, several insect-based visual motion sensors have been designed and implemented on various robots, and considerable improvements have been made in terms of their mass, size and power consumption. The new lightweight visual motion sensor presented here generates 5 simultaneous neighboring measurements of the 1-D angular speed of a natural scene within a measurement range of more than one decade [25°/s; 350°/s]. Using a new sensory fusion method consisting in computing the median value of the 5 local motion units, we ended up with a more robust, more accurate and more frequently refreshed measurement of the 1-D angular speed.
  • Keywords
    aerospace safety; aircraft navigation; autonomous aerial vehicles; avionics; image fusion; image motion analysis; image sensors; motion measurement; natural scenes; robot vision; 1-gram insect based device; 1D angular speed; EMD circuit; MAV; autopilots; elementary motion detector; insect-based visual motion sensors; lightweight low-power sensors; maximum permissible avionic payload; microaerial vehicle; natural scene; navigation safety; power consumption; sensor fusion method; visual motion measurement; Biomedical optical imaging; Lenses; Motion measurement; Optical sensors; Sensor phenomena and characterization; Visualization;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Sensors, 2011 IEEE
  • Conference_Location
    Limerick
  • ISSN
    1930-0395
  • Print_ISBN
    978-1-4244-9290-9
  • Type

    conf

  • DOI
    10.1109/ICSENS.2011.6127157
  • Filename
    6127157