Towards a Design Flow for Reversible Logic

Edition en anglais

Robert Wille

,

Rolf Drechsler

Note moyenne 
Robert Wille et Rolf Drechsler - Towards a Design Flow for Reversible Logic.
The development of computing machines found great success in the last decades. But the ongoing miniaturization of integrated circuits will reach its limits... Lire la suite
123,04 € Neuf
Expédié sous 6 à 12 jours
Livré chez vous entre le 16 mai et le 22 mai
En librairie

Résumé

The development of computing machines found great success in the last decades. But the ongoing miniaturization of integrated circuits will reach its limits in the near future. Shrinking transistor sizes and power dissipation are the major barriers in the development of smaller and more powerful circuits. Reversible logic provides an alternative that may overcome many of these problems in the future.
For low-power design, reversible logic offers significant advantages since zero power dissipation will only be possible if computation is reversible. Furthermore, quantum computation profits from enhancements in this area, because every quantum circuit is inherently reversible and thus requires reversible descriptions. However, since reversible logic is subject to certain restrictions (e.g. fanout and feedback are not directly allowed), the design of reversible circuits significantly differs from the design of traditional circuits.
Nearly all steps in the design flow (like synthesis, verification, or debugging) must be redeveloped so that they become applicable to reversible circuits as well. But research in reversible logic is still at the beginning. No continuous design flow exists so far.In Towards a Design Flow for Reversible Logic, contributions to a design flow for reversible logic are presented. This includes advanced methods for synthesis, optimization, verification, and debugging.
Formal methods like Boolean satisfiability and decision diagrams are thereby exploited. By combining the techniques proposed in the book, it is possible to synthesize reversible circuits representing large functions. Optimization approaches ensure that the resulting circuits are of small cost. Finally, a method for equivalence checking and automatic debugging allows to verify the obtained results and helps to accelerate the search for bugs in case of errors in the design.
Combining the respective approaches, a first design flow for reversible circuits of significant size results.

Caractéristiques

  • Date de parution
    01/10/2010
  • Editeur
  • ISBN
    978-90-481-9578-7
  • EAN
    9789048195787
  • Présentation
    Cartonné
  • Poids
    0.452 Kg
  • Dimensions
    16,4 cm × 24,4 cm × 2,0 cm

Avis libraires et clients

Avis audio

Écoutez ce qu'en disent nos libraires !

Des mêmes auteurs

Vous aimerez aussi

Derniers produits consultés

123,04 €