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Autor(en): 
  • Nicu Sebe
  • Max Welling
  • Yue Song
  • Thomas Anderson Keller
  • Structured Representation Learning: From Homomorphisms and Disentanglement to Equivariance and Topography 
     

    (Buch)
    Dieser Artikel gilt, aufgrund seiner Grösse, beim Versand als 2 Artikel!


    Übersicht

    Auf mobile öffnen
     
    Lieferstatus:   i.d.R. innert 7-14 Tagen versandfertig
    Veröffentlichung:  Mai 2026  
    Genre:  EDV / Informatik 
     
    Bildverarbeitung / DisentangledRepresentationLearning / EquivariantNeuralNetworks / GenerativeModels / LearnedHomomorphisms / Maschinelles Lernen / Maschinelles Sehen, Bildverstehen / StructuredRepresentationLearning
    ISBN:  9783031881138 
    EAN-Code: 
    9783031881138 
    Verlag:  Springer 
    Einband:  Kartoniert  
    Sprache:  English  
    Dimensionen:  H 240 mm / B 168 mm / D 9 mm 
    Gewicht:  328 gr 
    Seiten:  168 
    Bewertung: Titel bewerten / Meinung schreiben
    Inhalt:
    This book introduces approaches to generalize the benefits of equivariant deep learning to a broader set of learned structures through learned homomorphisms. In the field of machine learning, the idea of incorporating knowledge of data symmetries into artificial neural networks is known as equivariant deep learning and has led to the development of cutting edge architectures for image and physical data processing. The power of these models originates from data-specific structures ingrained in them through careful engineering. To-date however, the ability for practitioners to build such a structure into models is limited to situations where the data must exactly obey specific mathematical symmetries. The authors discuss naturally inspired inductive biases, specifically those which may provide types of efficiency and generalization benefits through what are known as homomorphic representations, a new general type of structured representation inspired from techniques in physics and neuroscience. A review of some of the first attempts at building models with learned homomorphic representations are introduced. The authors demonstrate that these inductive biases improve the ability of models to represent natural transformations and ultimately pave the way to the future of efficient and effective artificial neural networks.

      



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