• DocumentCode
    2215729
  • Title

    Artificial neural network synthesis by means of artificial bee colony (ABC) algorithm

  • Author

    Garro, Beatriz A. ; Sossa, Humberto ; Vázquez, Roberto A.

  • Author_Institution
    Center for Comput. Res., CIC-IPN, Mexico City, Mexico
  • fYear
    2011
  • fDate
    5-8 June 2011
  • Firstpage
    331
  • Lastpage
    338
  • Abstract
    Artificial bee colony (ABC) algorithm has been used in several optimization problems, including the optimization of synaptic weights from an Artificial Neural Network (ANN). However, this is not enough to generate a robust ANN. For that reason, some authors have proposed methodologies based on so-called metaheuristics that automatically allow designing an ANN, taking into account not only the optimization of the synaptic weights as well as the ANN´s architecture, and the transfer function of each neuron. However, those methodologies do not generate a reduced design (synthesis) of the ANN. In this paper, we present an ABC based methodology, that maximizes its accuracy and minimizes the number of connections of an ANN by evolving at the same time the synaptic weights, the ANN´s architecture and the transfer functions of each neuron. The methodology is tested with several pattern recognition problems.
  • Keywords
    learning (artificial intelligence); neural nets; optimisation; pattern classification; transfer functions; ABC based methodology; artificial bee colony algorithm; artificial neural network synthesis; metaheuristics; pattern recognition; synaptic weight optimization; transfer function; Accuracy; Algorithm design and analysis; Artificial neural networks; Iris recognition; Neurons; Object recognition; Transfer functions;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Evolutionary Computation (CEC), 2011 IEEE Congress on
  • Conference_Location
    New Orleans, LA
  • ISSN
    Pending
  • Print_ISBN
    978-1-4244-7834-7
  • Type

    conf

  • DOI
    10.1109/CEC.2011.5949637
  • Filename
    5949637