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This paper presents an bio-inspired event-based perception scheme for agile aerial robot maneuvering. It tries to mimic birds, which perform purposeful maneuvers by closing the separation in the retinal image (w.r.t. the goal) to follow time-to-contact trajectories. The proposed approach is based on event cameras, also called artificial retinas, which provide fast response and robustness against motion blur and lighting conditions. Our scheme guides the robot by only adjusting the position of features extracted in the event image plane to their goal positions at a predefined time using smooth time-to-contact trajectories. The proposed scheme is robust, efficient and can be added on top of commonly-used aerial robot velocity controllers. It has been validated on-board a UAV with real-time computation in low-cost hardware during sets of experiments with different descent maneuvers and lighting conditions.
This work was supported by the ARM-EXTEND (DPI2017-8979-R) project funded by the Spanish National R&D Plan.
visual servoing, Event-based vision, aerial robots, time-to-contact, Line tracker, Tau theory, event camera, Perception systems, perception systems, Aerial robots, line tracker, Visual servoing, tau theory, Time-to-contact, Event camera, event-based vision
visual servoing, Event-based vision, aerial robots, time-to-contact, Line tracker, Tau theory, event camera, Perception systems, perception systems, Aerial robots, line tracker, Visual servoing, tau theory, Time-to-contact, Event camera, event-based vision
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