Evolution of Complex Coordinated Behavior
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Risto Miikkulainen | Padmini Rajagopalan | Kay E. Holekamp | R. Miikkulainen | K. Holekamp | P. Rajagopalan | Padmini Rajagopalan
[1] Hans Kruuk,et al. The Spotted Hyena: A Study of Predation and Social Behavior , 1972 .
[2] J. Elliott,et al. Territoriality, density, and prey of the lion in Ngorongoro Crater, Tanzania , 1978 .
[3] Craig Packer,et al. The Evolution of Cooperative Hunting , 1988, The American Naturalist.
[4] Susan M. Cooper,et al. Optimal hunting group size: the need for lions to defend their kills against loss to spotted hyaenas , 1991 .
[5] Marco Dorigo,et al. Ant system: optimization by a colony of cooperating agents , 1996, IEEE Trans. Syst. Man Cybern. Part B.
[6] Toshio Fukuda,et al. Virus-evolutionary genetic algorithm-coevolution of planar grid model , 1996, Proceedings of IEEE 5th International Fuzzy Systems.
[7] Risto Miikkulainen,et al. Evolving Neural Networks through Augmenting Topologies , 2002, Evolutionary Computation.
[8] Dario Floreano,et al. Effects of Group Composition and Level of Selection in the Evolution of Cooperation in Artificial Ants , 2003, ECAL.
[9] Craig Packer,et al. Top–down population regulation of a top predator: lions in the Ngorongoro Crater , 2004, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[10] Risto Miikkulainen,et al. Competitive Coevolution through Evolutionary Complexification , 2011, J. Artif. Intell. Res..
[11] Risto Miikkulainen,et al. Evolving Soccer Keepaway Players Through Task Decomposition , 2005, Machine Learning.
[12] Gerald Kastberger,et al. Competitive interactions between spotted hyenas and lions in the Etosha National Park, Namibia , 2005 .
[13] D. Floreano,et al. Division of labour and colony efficiency in social insects: effects of interactions between genetic architecture, colony kin structure and rate of perturbations , 2006, Proceedings of the Royal Society B: Biological Sciences.
[14] Olympia Roeva,et al. Multiple model approach to modelling of Escherichia coli fed-batch cultivation extracellular production of bacterial phytase , 2007 .
[15] K. Holekamp,et al. Interspecific competition influences reproduction in spotted hyenas , 2008 .
[16] Simon M. Lucas,et al. Evolution versus Temporal Difference Learning for learning to play Ms. Pac-Man , 2009, 2009 IEEE Symposium on Computational Intelligence and Games.
[17] B. L. Penzhorn,et al. A Long‐term Study of Social Organisation and Behaviour of Cape Mountain Zebras Equus zebra zebra , 2010 .
[18] Kenneth O. Stanley,et al. Picbreeder: A Case Study in Collaborative Evolutionary Exploration of Design Space , 2011, Evolutionary Computation.
[19] Kenneth O. Stanley,et al. On the deleterious effects of a priori objectives on evolution and representation , 2011, GECCO '11.
[20] Terence Soule,et al. A comparison of a communication strategies in cooperative learning , 2012, GECCO '12.
[21] Christopher C. Strelioff,et al. Society, demography and genetic structure in the spotted hyena , 2012, Molecular ecology.
[22] Terence Soule,et al. Evolution of communication and cooperation , 2014, GECCO.
[23] Risto Miikkulainen,et al. Evolving multimodal behavior with modular neural networks in Ms. Pac-Man , 2014, GECCO.
[24] R. Miikkulainen,et al. Learning Behavior Characterizations for Novelty Search , 2016, GECCO.
[25] Padmini Rajagopalan,et al. The Evolution of Coordinated Cooperative Behaviors , 2016 .
[26] Kay E. Holekamp,et al. Lions, hyenas and mobs (oh my!) , 2016, Current zoology.
[27] Risto Miikkulainen,et al. Factors that Affect the Evolution of Complex Cooperative Behavior , 2019, Artificial Life Conference Proceedings.