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Título : Self-Optimization in Continuous-Time Recurrent Neural Networks
Autor: Zarco, Mario
Otros autores : Froese, Tom
En: Frontiers in Robotics and AI (2296-9144), Vol. 5(96), (2018)
Número completo : https://www.frontiersin.org/journals/robotics-and-ai
Editorial : Frontiers Media S.A.
Abstract : recent advance in complex adaptive systems has revealed a new unsupervised learning technique called self-modeling or self-optimization. Basically, a complex network that can form an associative memory of the state configurations of the attractors on which it converges will optimize its structure: it will spontaneously generalize over these typically suboptimal attractors and thereby also reinforce more optimal attractors-even if these better solutions are normally so hard to find that they have never been previously visited. Ideally, after sufficient self-optimization the most optimal attractor dominates the state space, and the network will converge on it from any initial condition. This technique has been applied to social networks, gene regulatory networks, and neural networks, but its application to less restricted neural controllers, as typically used in evolutionary robotics, has not yet been attempted. Here we show for the first time that the self-optimization process can be implemented in a continuous-time recurrent neural network with asymmetrical connections. We discuss several open challenges that must still be addressed before this technique could be applied in actual robotic scenarios.
Area del conocimiento : Ingeniería y Tecnología
Palabras clave en inglés : Hopfield neural network
Hebbian learning
fixed-point attractors
optimization
modeling
Fecha de publicación : 21-sep-2018
DOI : http://dx.doi.org/10.3389/frobt.2018.00096
URI : http://www.ru.iimas.unam.mx/handle/IIMAS_UNAM/ART39
Idioma: Inglés
Lugar: Estados Unidos
Citación : Zarco, M., & Froese, T. (2018). Self-Optimization in Continuous-Time Recurrent Neural Networks. Frontiers in Robotics and Ai, 5. doi:10.3389/frobt.2018.00096
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