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Self-Organized Construction with Continuous Building Material: Higher Flexibility Based on Braided Structures.

, , , , , , , and . FAS*W@SASO/ICCAC, page 154-159. IEEE, (2016)

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Centralization vs. decentralization in multi-robot coverage: Ground robots under UAV supervision., , , , , and . CoRR, (2024)On the Tradeoff Between Hardware Protection and Optimization Success: A Case Study in Onboard Evolutionary Robotics for Autonomous Parallel Parking., and . EvoApplications, volume 9028 of Lecture Notes in Computer Science, page 759-770. Springer, (2015)Self-Organized Construction with Continuous Building Material: Higher Flexibility Based on Braided Structures., , , , , , , and . FAS*W@SASO/ICCAC, page 154-159. IEEE, (2016)Evolved Control of Natural Plants: Crossing the Reality Gap for User-Defined Steering of Growth and Motion., , , , , , and . ACM Trans. Auton. Adapt. Syst., 12 (3): 15:1-15:24 (2017)Biohybrid systems for environmental intelligence on living plants: WatchPlant project., , , , , , , , , and 2 other author(s). GoodIT, page 210-215. ACM, (2021)Constructing living buildings: a review of relevant technologies for a novel application of biohybrid robotics, , , , , , , , , and 1 other author(s). Journal of the Royal Society Interface, 16 (156): 20190238 (2019)A robot to shape your natural plant: the machine learning approach to model and control bio-hybrid systems., , , , , , , and . GECCO, page 165-172. ACM, (2018)Multi-robot Coverage Using Self-organized Networks for Central Coordination., , , , , and . ANTS Conference, volume 12421 of Lecture Notes in Computer Science, page 216-228. Springer, (2020)Distributed Connectivity Control in Bio-Hybrid Wireless Sensor Networks., , , , , and . GoodIT, page 250-257. ACM, (2022)Flora Robotica - Mixed Societies of Symbiotic Robot-Plant Bio-Hybrids., , , , , , , , , and 4 other author(s). SSCI, page 1102-1109. IEEE, (2015)