DocumentCode
82875
Title
Biomimetic Signal Conditioning and Light Adaptation for Compound Vision Sensors
Author
Dean, Brian K. ; Wright, Cameron H. G. ; Barrett, Steven F.
Author_Institution
Dept. of Electr. & Comput. Eng., Oakland Univ., Rochester, MI, USA
Volume
15
Issue
1
fYear
2015
fDate
Jan. 2015
Firstpage
269
Lastpage
278
Abstract
Previous research efforts in mimicking the compound eye of Musca domestica, the common house fly, in hardware have primarily been focused on optical designs to achieve the fast, analog, parallel processing, and motion hyperacuity properties of the biological system. While these optical platforms have shown promising results, nearly all proposed advantages of utilizing a fly-inspired sensor have been discovered through the use of software simulation with very little or no effort being made to validate these simulations using the actual fly-inspired optics. The work presented in this paper advances the frontier of compound vision research by mimicking the core processing systems of the fly´s intermediate neural layer structure (the lamina) in hardware. The hardware designs were kept as biomimetic as possible, and the unique motion hyperacuity characteristic of Musca´s visual system was preserved in each circuit design. It will be shown that an effective light adaptation system can be designed that is both analog and parallel by directly mimicking the fly´s visual system. The proof-of-concept designs presented in this paper are an important first step in turning the novel compound optical designs of the past decade into useful sensors that can function in dynamic real-world environments.
Keywords
biomimetics; image processing equipment; image sensors; optical design techniques; Musca domestica; analog signal processing; biomimetic signal conditioning; common house fly; compound eye; compound vision sensors; core processing systems; fly visual system; light adaptation; motion hyperacuity properties; optical design; parallel signal processing; Biomedical optical imaging; Lenses; Optical amplifiers; Optical filters; Optical imaging; Optical sensors; Analog circuits; biomimetics; fly vision; hyperacuity; light adaptation; visual system;
fLanguage
English
Journal_Title
Sensors Journal, IEEE
Publisher
ieee
ISSN
1530-437X
Type
jour
DOI
10.1109/JSEN.2014.2337254
Filename
6849923
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