DocumentCode
79937
Title
Two-Directional 1-g Visual Motion Sensor Inspired by the Fly´s Eye
Author
Roubieu, F.L. ; Expert, F. ; Sabiron, Guillaume ; Ruffier, Franck
Author_Institution
Biorobotics Dept., Aix-Marseille Univ., Marseille, France
Volume
13
Issue
3
fYear
2013
fDate
Mar-13
Firstpage
1025
Lastpage
1035
Abstract
Optic flow-based autopilots for Micro-Aerial Vehicles (MAVs) need lightweight, low-power sensors to be able to fly safely through unknown environments. The new tiny 6-pixel visual motion sensor presented here meets these demanding requirements in terms of its mass, size, and power consumption. This 1-gram, low-power, fly-inspired sensor accurately gauges the visual motion using only this 6-pixel array with two different panoramas and illuminance conditions. The new visual motion sensor´s output results from a smart combination of the information collected by several 2-pixel Local Motion Sensors (LMSs), on the basis of the “time of travel” scheme originally inspired by the common housefly´s Elementary Motion Detector (EMD) neurons. The proposed sensory fusion method enables the new visual sensor to measure the visual angular speed and determine the main direction of the visual motion without any prior knowledge. Through computing the median value of the output from several LMSs, we also end up with a more robust, more accurate, and more frequently refreshed measurement of the one-dimensional angular speed.
Keywords
low-power electronics; motion estimation; fly´s eye; lightweight; local motion sensors; low-power sensors; micro-aerial vehicles; optic flow-based autopilots; time of travel scheme; two-directional 1-g visual motion sensor; visual angular speed; Arrays; Least squares approximation; Motion measurement; Photoreceptors; Robot sensing systems; Visualization; Bio-inspiration; fly; motion sensor; neuromorphic; optic flow; vision;
fLanguage
English
Journal_Title
Sensors Journal, IEEE
Publisher
ieee
ISSN
1530-437X
Type
jour
DOI
10.1109/JSEN.2012.2230622
Filename
6365225
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