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A fully-autonomous hovercraft inspired by bees: Wall following and speed control in straight and tapered corridors.

, , , , and . ROBIO, page 1311-1318. IEEE, (2012)

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A quasi-panoramic bio-inspired eye for flying parallel to walls., , and . IEEE SENSORS, page 1-3. IEEE, (2017)Vector Field Aided Trajectory Tracking by a 10-gram Flapping-Wing Micro Aerial Vehicle., , , , , and . ICRA, page 5379-5385. IEEE, (2023)Effect of top-down connections in Hierarchical Sparse Coding., , , and . CoRR, (2020)Optic-flow based car-like robot operating in a 5-decade light level range., , and . ICRA, page 5568-5575. IEEE, (2016)Signal-based self-organization of a chain of UAVs for subterranean exploration., , , , and . CoRR, (2020)Visually Guided Micro-aerial Vehicle: Automatic Take Off, Terrain Following, Landing and Wind Reaction., and . ICRA, page 2339-2346. IEEE, (2004)Bio-inspired optical flow circuits for the visual guidance of micro air vehicles., , , and . ISCAS (3), page 846-849. IEEE, (2003)Towards an automatic parking system using bio-inspired 1-D optical flow sensors., , and . ICVES, page 96-103. IEEE, (2015)Biomimetic optic flow sensing applied to a lunar landing scenario., , , and . ICRA, page 2253-2260. IEEE, (2010)Time-of-Travel Methods for Measuring Optical Flow on Board a Micro Flying Robot., , , , and . Sensors, 17 (3): 571 (2017)