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Implementation of a Cue-Based Aggregation with a Swarm Robotic System.

, , , , и . KTW, том 295 из Communications in Computer and Information Science, стр. 113-122. Springer, (2011)

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Development of a bio-inspired vision system for mobile micro-robots., , и . ICDL-EPIROB, стр. 81-86. IEEE, (2014)Imitation of Honeybee Aggregation with Collective Behavior of Swarm Robots., , , и . Int. J. Comput. Intell. Syst., 4 (4): 739-748 (2011)Omnipotent Virtual Giant for Remote Human-Swarm Interaction., , , , и . RO-MAN, стр. 488-494. IEEE, (2021)A Real-Time Note Transcription Technique Using Static and Dynamic Window Sizes., и . ICSAP, стр. 30-33. IEEE Computer Society, (2009)Implementation of a Cue-Based Aggregation with a Swarm Robotic System., , , , и . KTW, том 295 из Communications in Computer and Information Science, стр. 113-122. Springer, (2011)Extended Artificial Pheromone System for Swarm Robotic Applications., , , , и . ALIFE, стр. 608-615. MIT Press, (2019)Mixed Controller Design for Multi-Vehicle Formation Based on Edge and Bearing Measurements., , , и . ECC, стр. 1666-1671. IEEE, (2022)Exploration of Underwater Environments with a Swarm of Heterogeneous Surface Robots., , , и . ICSI (2), том 13969 из Lecture Notes in Computer Science, стр. 26-37. Springer, (2023)Collaborative Coverage for a Network of Vacuum Cleaner Robots., , и . TAROS, том 13054 из Lecture Notes in Computer Science, стр. 112-115. Springer, (2021)Investigation of Cue-Based Aggregation Behaviour in Complex Environments., , , , и . CollaborateCom (2), том 350 из Lecture Notes of the Institute for Computer Sciences, Social Informatics and Telecommunications Engineering, стр. 18-36. Springer, (2020)