Deep Learning in Multi-step Prediction of Chaotic Dynamics From Deterministic Models to Real-World Systems

The book represents the first attempt to systematically deal with the use of deep neural networks to forecast chaotic time series. Differently from most of the current literature, it implements a multi-step approach, i.e., the forecast of an entire interval of future values. This is relevant for man...

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Detalles Bibliográficos
Autor principal: Sangiorgio, Matteo (-)
Otros Autores: Dercole, Fabio, Guariso, Giorgio
Formato: Libro electrónico
Idioma:Inglés
Publicado: Cham : Springer International Publishing 2021.
Edición:1st ed. 2021.
Colección:Springer eBooks.
PoliMI SpringerBriefs.
Acceso en línea:Conectar con la versión electrónica
Ver en Universidad de Navarra:https://innopac.unav.es/record=b46200976*spi
Descripción
Sumario:The book represents the first attempt to systematically deal with the use of deep neural networks to forecast chaotic time series. Differently from most of the current literature, it implements a multi-step approach, i.e., the forecast of an entire interval of future values. This is relevant for many applications, such as model predictive control, that requires predicting the values for the whole receding horizon. Going progressively from deterministic models with different degrees of complexity and chaoticity to noisy systems and then to real-world cases, the book compares the performances of various neural network architectures (feed-forward and recurrent). It also introduces an innovative and powerful approach for training recurrent structures specific for sequence-to-sequence tasks. The book also presents one of the first attempts in the context of environmental time series forecasting of applying transfer-learning techniques such as domain adaptation.
Descripción Física:1 recurso electrónico, XII, 104 páginas, 46 ilustraciones, 25 ilustraciones en color
Formato:Forma de acceso: World Wide Web.
ISBN:9783030944827