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Cooperative Behavior Acquisition for Mobile Robots in Dynamically Changing Real Worlds Via Vision-Based Reinforcement Learning and Development.

, , and . Artif. Intell., 110 (2): 275-292 (1999)

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Biologically inspired embodied evolution of survival., , , and . Congress on Evolutionary Computation, page 2210-2216. IEEE, (2005)Behavior generation for a mobile robot based on the adaptive fitness function., , and . Robotics and Autonomous Systems, 40 (2-3): 69-77 (2002)The Cyber Rodent Project: Exploration of Adaptive Mechanisms for Self-Preservation and Self-Reproduction., and . Adaptive Behaviour, 13 (2): 149-160 (2005)Model-Free Deep Inverse Reinforcement Learning by Logistic Regression.. Neural Processing Letters, 47 (3): 891-905 (2018)Sigmoid-Weighted Linear Units for Neural Network Function Approximation in Reinforcement Learning., , and . CoRR, (2017)Reinforcement learning with state-dependent discount factor., , and . ICDL-EPIROB, page 1-6. IEEE, (2013)Vision-Based Robot Learning Towards RoboCup: Osaka University "Trackies"., , , , , , , and . RoboCup, volume 1395 of Lecture Notes in Computer Science, page 305-319. Springer, (1997)Cooperative Behavior Acquisition in a Multiple Mobile Robot Environment by Co-evolution., , and . RoboCup, volume 1604 of Lecture Notes in Computer Science, page 273-285. Springer, (1998)Online meta-learning by parallel algorithm competition., , and . GECCO, page 426-433. ACM, (2018)Free-Energy Based Reinforcement Learning for Vision-Based Navigation with High-Dimensional Sensory Inputs., , , and . ICONIP (1), volume 6443 of Lecture Notes in Computer Science, page 215-222. Springer, (2010)