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Bio-Inspired Visual Navigation for a Quadcopter using Optic Flow

Chelsea Sabo, Alex Cope, Kevin Gurney, Eleni Vasilaki, James A. R. Marshall

Year
2016
Citations
26

Abstract

Small Unmanned Air Vehicles (UAVs) have become increasingly used in many fields to keep up with demands for technological growth and due to their unique ability to provide an “eye-in-the-sky”. However, traditional guidance systems are not always suitable for a transition to smaller UAVs. Honeybee navigation has long been proposed as a basis for developing navigation for robotics as they are known to solve complex tasks efficiently and robustly. An approach for bio-inspired navigation using optic flow is presented here based on honeybee reactive flight control. This approach is tested and verified in the benchmark hallway navigation problem. It is shown that the control approach can explain a wide-range of biological behaviors using minimal sensors similar to flying insects.

Keywords

QuadcopterComputer scienceOptical flowComputer visionFlow (mathematics)Artificial intelligenceHuman–computer interactionEngineeringAerospace engineeringImage (mathematics)

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