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Updated: Apr 24, 2026

Automated Charting of the Visual Space of Housefly Compound Eyes
Published on: March 31, 2022
Bio-inspired modeling and implementation of the ocelli visual system of flying insects
Gregory Gremillion1, J Sean Humbert, Holger G Krapp
1Department of Aerospace Engineering, University of Maryland, College Park, MD, 20742, USA, gmgrem@umd.edu.
Abstract:
Two visual sensing modalities in insects, the ocelli and compound eyes, provide signals used for flight stabilization and navigation. In this article, a generalized model of the ocellar visual system is developed for a 3-D visual simulation environment based on behavioral, anatomical, and electrophysiological data from several species. A linear measurement model is estimated from Monte Carlo simulation in a cluttered urban environment relating state changes of the vehicle to the outputs of the ocellar model. A fully analog-printed circuit board sensor based on this model is designed and fabricated. Open-loop characterization of the sensor to visual stimuli induced by self motion is performed. Closed-loop stabilizing feedback of the sensor in combination with optic flow sensors is implemented onboard a quadrotor micro-air vehicle and its impulse response is characterized.

