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Nathanaël Aubert-Kato
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2020 – today
- 2024
- [c15]Nathanaël Aubert-Kato, Mika Ito:
Exploration of Reservoir Properties in Molecular Computing Systems. CEC 2024: 1-8 - [c14]Federico Da Rold, Leo Cazenille, Nathanaël Aubert-Kato:
Analysis of Pruned Deep Models Trained with Neuroevolution. GECCO Companion 2024: 591-594 - [i3]Leo Cazenille, Nicolas Lobato-Dauzier, Alessia Loi, Mika Ito, Olivier Marchal, Nathanaël Aubert-Kato, Nicolas Bredèche, Anthony J. Genot:
Hearing the shape of an arena with spectral swarm robotics. CoRR abs/2403.17147 (2024) - 2022
- [j6]Adrien Fauste-Gay, Nicolas Lobato-Dauzier, Alexandre Baccouche, Yannick Rondelez, Soo Hyeon Kim, Teruo Fujii, Nathanaël Aubert-Kato, Anthony J. Genot:
Toggling Between Two Limit Cycles in a Molecular Ecosystem. New Gener. Comput. 40(2): 703-721 (2022) - [c13]Federico Da Rold, Olaf Witkovski, Nathanaël Aubert-Kato:
Synaptic pruning with MAP-elites. GECCO Companion 2022: 639-642 - 2021
- [c12]Mika Ito, Leo Cazenille, Nathanaël Aubert-Kato:
Automatic exploration of the property space of reservoirs. GECCO Companion 2021: 99-100 - [c11]Nathanaël Aubert-Kato, Guillaume Gines, Teruo Fujii, Yannick Rondelez:
Emergence of structures from parasitic species in a spatially distributed molecular system. ALIFE 2021: 111 - 2020
- [j5]Nathanaël Aubert-Kato, Leo Cazenille:
Designing Dynamical Molecular Systems with the PEN Toolbox. New Gener. Comput. 38(2): 341-366 (2020) - [c10]Vikas Gupta, Nathanaël Aubert-Kato, Leo Cazenille:
Exploring the BipedalWalker benchmark with MAP-Elites and curiosity-driven A3C. GECCO Companion 2020: 79-80 - [c9]Nicolas Lobato-Dauzier, Leo Cazenille, Teruo Fujii, Anthony J. Genot, Nathanaël Aubert-Kato:
Temperature-based inputs for molecular reservoir computers. ALIFE 2020: 420-422
2010 – 2019
- 2019
- [c8]Leo Cazenille, Nicolas Bredèche, Nathanaël Aubert-Kato:
Exploring Self-Assembling Behaviors in a Swarm of Bio-micro-robots using Surrogate-Assisted MAP-Elites. SSCI 2019: 238-246 - [c7]Yuko Sakanaka, Nathanaël Aubert-Kato:
Surrogate-Assisted Optimization of the Opt-IA Artificial Immune System Algorithm. SSCI 2019: 1937-1944 - [i2]Leo Cazenille, Nicolas Bredèche, Nathanaël Aubert-Kato:
Exploring Self-Assembling Behaviors in a Swarm of Bio-micro-robots using Surrogate-Assisted MAP-Elites. CoRR abs/1910.00230 (2019) - 2018
- [c6]Wataru Yahiro, Nathanaël Aubert-Kato, Masami Hagiya:
A reservoir computing approach for molecular computing. ALIFE 2018: 31-38 - 2017
- [c5]Nathanaël Aubert-Kato, Charles Fosseprez, Guillaume Gines, Ibuki Kawamata, Quang Huy Dinh, Leo Cazenille, Andre Estevez-Torres, Masami Hagiya, Yannick Rondelez, Nicolas Bredèche:
Evolutionary optimization of self-assembly in a swarm of bio-micro-robots. GECCO 2017: 59-66 - 2016
- [j4]Masami Hagiya, Nathanaël Aubert-Kato, Shaoyu Wang, Satoshi Kobayashi:
Molecular computers for molecular robots as hybrid systems. Theor. Comput. Sci. 632: 4-20 (2016) - 2015
- [j3]Nathanaël Aubert-Kato:
A Specialized Tri-species Comparator for the DNA PEN Toolbox. New Gener. Comput. 33(3): 231-252 (2015) - [j2]Quang Huy Dinh, Nathanael Aubert, Nasimul Noman, Teruo Fujii, Yannick Rondelez, Hitoshi Iba:
An Effective Method for Evolving Reaction Networks in Synthetic Biochemical Systems. IEEE Trans. Evol. Comput. 19(3): 374-386 (2015) - [c4]Nathanaël Aubert-Kato, Olaf Witkowski, Takashi Ikegami:
The Hunger Games: Embodied agents evolving foraging strategies on the frugal-greedy spectrum. ECAL 2015: 357-364 - [i1]Nicholas Guttenberg, Matthieu Laneuville, Melissa Ilardo, Nathanaël Aubert-Kato:
Transferable measurements of Heredity in models of the Origins of Life. CoRR abs/1501.01745 (2015) - 2014
- [j1]Nathanael Aubert, Yannick Rondelez, Teruo Fujii, Masami Hagiya:
Enforcing logical delays in DNA computing systems. Nat. Comput. 13(4): 559-572 (2014) - [c3]Olaf Witkowski, Nathanael Aubert:
Pseudo-Static Cooperators: Moving Isn't Always about Going Somewhere. ALIFE 2014: 392-397 - 2013
- [c2]Nathanael Aubert, Quang Huy Dinh, Masami Hagiya, Hitoshi Iba, Teruo Fujii, Nicolas Bredèche, Yannick Rondelez:
Evolution of Cheating DNA-based Agents Playing the Game of Rock-Paper-Scissors. ECAL 2013: 1143-1150 - 2012
- [c1]Ibuki Kawamata, Nathanael Aubert, Masahiro Hamano, Masami Hagiya:
Abstraction of Graph-Based Models of Bio-molecular Reaction Systems for Efficient Simulation. CMSB 2012: 187-206
Coauthor Index
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