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Autonomous task allocation by artificial evolution for robotic swarms in complex tasks.

, , , and . Artif. Life Robotics, 24 (1): 127-134 (2019)

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Developing End-to-End Control Policies for Robotic Swarms Using Deep Q-learning., , , , and . J. Adv. Comput. Intell. Intell. Informatics, 23 (5): 920-927 (2019)Evolving Collective Cognition of Robotic Swarms in the Foraging Task with Poison., , and . CEC, page 3205-3212. IEEE, (2019)Evolving collective cognition for object identification in foraging robotic swarms., , and . Artif. Life Robotics, 26 (1): 21-28 (2021)Evolving autonomous specialization in congested path formation task of robotic swarms., , , and . Artif. Life Robotics, 23 (4): 547-554 (2018)Reinforcement Learning for Mobile Robot Obstacle Avoidance with Deep Deterministic Policy Gradient., , , , , and . ICIRA (3), volume 13457 of Lecture Notes in Computer Science, page 197-204. Springer, (2022)SIF-Based GPP Is a Useful Index for Assessing Impacts of Drought on Vegetation: An Example of a Mega-Drought in Yunnan Province, China., , , , , , , , , and . Remote. Sens., 14 (6): 1509 (2022)LPCC-Net: RGB Guided Local Point Cloud Completion for Outdoor 3D Object Detection., , , , and . ICME, page 1-6. IEEE, (2021)2nd Place Solution for IJCAI-PRICAI 2020 3D AI Challenge: 3D Object Reconstruction from A Single Image., , , and . CoRR, (2021)Autonomous task allocation by artificial evolution for robotic swarms in complex tasks., , , and . Artif. Life Robotics, 24 (1): 127-134 (2019)Collective cognition: A case study of evolutionary swarm robotics in the collective foraging problem with poison., , and . SII, page 865-686. IEEE, (2017)