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Alignment mechanism and system concept of a scalable deployable ultra-lightweight space telescope for a 1U CubeSat demonstrator

, , , , and . Unlocking Imagination, Fostering Innovation and Strengthening Security, 1, page 481. Red Hook, Curran Associates Inc., (2018)

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OCULUS-Cube : a Demonstrator of Optical Coatings for Ultra Lightweight Robust Spacecraft Structures, , , , , and . Small satellites for earth observation : digest of the 11th International Symposium of the International Academy of Astronautics Berlin, April 24-28, 2017, page 331-334. Berlin, Wissenschaft und Technik Verlag, (2017)Alignment mechanism and system concept of a scalable deployable ultra-lightweight space telescope for a 1U CubeSat demonstrator, , , , and . Unlocking Imagination, Fostering Innovation and Strengthening Security, 1, page 481. Red Hook, Curran Associates Inc., (2018)Automated Data Retrieval from Large-Scale Distributed Satellite Systems., , , , , , , , , and 4 other author(s). CASE, page 1789-1795. IEEE, (2019)Ground verification of the feasibility of telepresent on-orbit servicing., , , , , , , and . J. Field Robotics, 26 (3): 287-307 (2009)SPHERES interact - Human-machine interaction aboard the International Space Station., , , , and . J. Field Robotics, 29 (4): 554-575 (2012)On-orbit servicing., , , , , , and . IEEE Robot. Automat. Mag., 16 (4): 29-33 (2009)Editorial: On-Orbit Servicing and Active Debris Removal: Enabling a Paradigm Shift in Spaceflight., , and . Front. Robotics and AI, (2019)A Biomimetic Docking Mechanism for Controlling Uncooperative Satellites on the ELISSA Free-Floating Laboratory., and . ICARM, page 77-82. IEEE, (2018)Development and Test of an Adaptable Docking Mechanism Based on Mushroom-Shaped Adhesive Microstructures, , , and . AIAA SPACE 2016, page 5486. Red Hook, Curran Associates Inc., (2016)