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SOPHIE: Soft and Flexible Aerial Vehicle for Physical Interaction With the Environment.

, , and . IEEE Robotics Autom. Lett., 7 (4): 11086-11093 (2022)

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A 3D-Printable Docking System for Aerial Robots: Controlling Aerial Robotic Manipulators in Outdoor Industrial Applications., , and . IEEE Robotics Autom. Mag., 26 (1): 44-53 (2019)SOPHIE: SOft and flexible aerial vehicle for PHysical Interaction with the Environment., , and . CoRR, (2022)High-Performance Morphing Wing for Large-Scale Bio-Inspired Unmanned Aerial Vehicles., , , and . IEEE Robotics Autom. Lett., 7 (3): 8076-8083 (2022)Aeroelastics-aware compensation system for soft aerial vehicle stabilization., , and . Frontiers Robotics AI, (2022)Hardware-implementable neural network for rotation-scaling invariant pattern classification., , , and . J. Electronic Imaging, 1 (3): 293-312 (1992)Multiple eyes in the skies: architecture and perception issues in the COMETS unmanned air vehicles project., , , , , , , , , and 9 other author(s). IEEE Robotics Autom. Mag., 12 (2): 46-57 (2005)Cooperative perimeter surveillance with a team of mobile robots under communication constraints., , , and . IROS, page 5067-5072. IEEE, (2013)Editorial: Soft aerial robots: Design, control, and applications of morphologically adaptive flyers., , and . Frontiers Robotics AI, (October 2023)Bio-Inspired Deformable Propeller Concept for Smooth Human-UAV Interaction and Efficient Thrust Generation., , and . IEEE Robotics Autom. Lett., 8 (6): 3430-3437 (June 2023)Thermally-Resilient Soft Gripper for Space Debris Removal., , and . CoRR, (2023)