Flies are capable of extraordinary flight maneuvers at very high speeds largely due to their highly elaborate visual system. In this work we present a fly-inspired FPGA based sensor system able to visually sense rotations around different body axes, for use on board micro aerial vehicles (MAVs). Rotation sensing is performed analogously to the fly's VS cell network using zero-crossing detection. An additional key feature of our system is the ease of adding new functionalities akin to the different tasks attributed to the fly's lobula plate tangential cell network, such as object avoidance or collision detection. Our implementation consists of a modified eneo SC-MVC01 SmartCam module and a custom built circuit board, weighing less than 200 g and consuming less than 4 W while featuring 57,600 individual two-dimensional elementary motion detectors, a 185° field of view and a frame rate of 350 frames per second. This makes our sensor system compact in terms of size, weight and power requirements for easy incorporation into MAV platforms, while autonomously performing all sensing and processing on-board and in real time. ; published


    Zugriff

    Download


    Exportieren, teilen und zitieren



    Titel :

    Bio-inspired visual ego-rotation sensor for MAVs


    Beteiligte:
    Plett, Johannes (Autor:in) / Bahl, Armin (Autor:in) / Buss, Martin (Autor:in) / Kühnlenz, Kolja (Autor:in) / Borst, Alexander (Autor:in)

    Erscheinungsdatum :

    2012-01-01


    Anmerkungen:

    22350507
    Biological Cybernetics ; 106 (2012), 1. - S. 51-63. - Springer. - ISSN 0340-1200. - eISSN 1432-0770



    Medientyp :

    Aufsatz (Zeitschrift)


    Format :

    Elektronische Ressource


    Sprache :

    Englisch


    Schlagwörter :

    Klassifikation :

    DDC:    570 / 629




    Bio-inspired visual ego-rotation sensor for MAVs

    Plett, J. / Bahl, A. / Buss, M. et al. | BASE | 2012

    Freier Zugriff

    naaiac17final00113 Dragonfly Inspired MAVs - Adaptive and Evolutionary approaches

    Kok, J. M. / Fatiaki, A. / Rosser, K. et al. | TIBKAT | 2018



    Autogyros for MAVs

    Shippen, J. / Royal Aeronautical Society | British Library Conference Proceedings | 1996


    Sensor Fault Mitigation for MAVs under Ground Effect*

    Matus-Vargas, Antonio / Rodriguez-Gomez, Gustavo / Martinez-Carranza, Jose | IEEE | 2019