• DocumentCode
    2636093
  • Title

    A new time-multiplexed interconnected architecture with buffering system for multi-chip CNN

  • Author

    Salerno, Mario ; Sargeni, Fausto ; Bonaiuto, Vincenzo

  • Author_Institution
    Dept. of Electron. Eng., Rome Univ., Italy
  • fYear
    1998
  • fDate
    14-17 Apr 1998
  • Firstpage
    391
  • Lastpage
    396
  • Abstract
    Real-time image processing represents an application field where cellular neural networks best show their powerful capabilities because of the full parallel analogue processing feature. For this purpose, the best performances can be carried out with a one-to-one correspondence between the image pixel and the neural cells. Consequently, this leads to the need to build very large CNN chips. In spite of this, these requirements do not agree with the need of the hardware manufacturer to design small chips, which are more reliable from a VLSI implementation point of view. Among the previously proposed solutions to this leading problem, the authors presented a current-mode interconnection-oriented approach able to carry out wide CNN networks making use of small chips. In the paper a technique to improve the interconnection architecture without any lack of functionality is presented
  • Keywords
    VLSI; cellular neural nets; image processing; multiplexing; neural chips; neural net architecture; VLSI implementation; buffering system; current-mode interconnection-oriented approach; multi-chip CNN; real-time image processing; time-multiplexed interconnected architecture; Cellular neural networks; Digital control; Hardware; Image processing; Joining processes; Manufacturing; Power engineering and energy; Real time systems; Very large scale integration; Voltage control;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Cellular Neural Networks and Their Applications Proceedings, 1998 Fifth IEEE International Workshop on
  • Conference_Location
    London
  • Print_ISBN
    0-7803-4867-2
  • Type

    conf

  • DOI
    10.1109/CNNA.1998.685409
  • Filename
    685409