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Devices, systems, and methods for automated monitoring enabling precision agriculture.

, , , , , , and . CASE, page 462-469. IEEE, (2015)

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Vision-based state estimation for autonomous rotorcraft MAVs in complex environments., , , and . ICRA, page 1758-1764. IEEE, (2013)Experiments in Fast, Autonomous, GPS-Denied Quadrotor Flight., , , , , , , , and . ICRA, page 7832-7839. IEEE, (2018)A Modular Folded Laminate Robot Capable of Multi Modal Locomotion., , , , , , , , and . ISER, volume 1 of Springer Proceedings in Advanced Robotics, page 59-70. Springer, (2016)Design of small, safe and robust quadrotor swarms., , and . ICRA, page 2208-2215. IEEE, (2015)Devices, systems, and methods for automated monitoring enabling precision agriculture., , , , , , and . CASE, page 462-469. IEEE, (2015)Towards fully autonomous visual inspection of dark featureless dam penstocks using MAVs., , , , , , , and . IROS, page 4998-5005. IEEE, (2016)Initialization-Free Monocular Visual-Inertial State Estimation with Application to Autonomous MAVs., , , and . ISER, volume 109 of Springer Tracts in Advanced Robotics, page 211-227. Springer, (2014)The Open Vision Computer: An Integrated Sensing and Compute System for Mobile Robots., , , , , , , , , and 1 other author(s). ICRA, page 1834-1840. IEEE, (2019)Multi-sensor fusion for robust autonomous flight in indoor and outdoor environments with a rotorcraft MAV., , , and . ICRA, page 4974-4981. IEEE, (2014)The Tiercel: A novel autonomous micro aerial vehicle that can map the environment by flying into obstacles., , , , , and . ICRA, page 7448-7454. IEEE, (2020)