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NEAT: NeuroEvolution of Augmenting Topologies×Neúrové vyhľadávanie architektúry×
OdborHlboké učenieHlboké učenie
RodinaMachine learningMachine learning
Rok vzniku20022017
TvorcaKenneth Stanley & Risto MiikkulainenZoph, B. & Le, Q.V.
TypNeuroevolutionary algorithmAutomated architecture optimization (deep learning)
Pôvodný zdrojStanley, K. O., & Miikkulainen, R. (2002). Evolving neural networks through augmenting topologies. Evolutionary Computation, 10(2), 99–127. DOI ↗Zoph, B. & Le, Q.V. (2017). Neural Architecture Search with Reinforcement Learning. ICLR. link ↗
Ďalšie názvyNeuroevolution of Augmenting Topologies, Topology and Weight Evolving Artificial Neural Networks (variant), Evolving Neural Networks, Topoloji Artırımlı NöroevrimNöral Mimari Arama (NAS), NAS, automated architecture design, differentiable architecture search
Príbuzné35
ZhrnutieNEAT is a genetic algorithm for evolving artificial neural networks introduced by Kenneth Stanley and Risto Miikkulainen in 2002. Unlike methods that evolve weights alone, NEAT simultaneously evolves both the topology (structure) and the connection weights of neural networks. It achieves this through a direct genome encoding with historical markings that enable meaningful crossover between networks of different structures, making it applicable to reinforcement learning, game playing, and control tasks without requiring a predefined architecture.Neural Architecture Search (NAS), introduced by Zoph and Le in 2017, automatically optimizes architectural decisions such as a network's depth, width, and connection structure instead of hand-designing them. Leading methods in the field include DARTS, ENAS, and Once-for-All.
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ScholarGatePorovnať metódy: NEAT · Neural Architecture Search. Získané 2026-06-19 z https://scholargate.app/sk/compare