• Title of article

    Fault-Tolerant Techniques for Quantum-dot Cellular Automata Circuits and Systems

  • Author/Authors

    Farazkish, Razieh Department of Computer Engineering - South Tehran Branch - Islamic Azad University , Zarei, Mani Department of Computer Engineering - Shahr-e-Qods Branch - Islamic Azad University

  • Pages
    14
  • From page
    23
  • To page
    36
  • Abstract
    This paper explains fault tolerance techniques for Quantum-dot cellular automata which offer remarkable robustness to implement QCA arithmetic circuits. It begins with a study of QCA based design. A classification for fault types is presented and some fault tolerance techniques are examined and their relevance for QCA circuits is evaluated. Finally, it is concluded that a combination of two or more hardware redundancy techniques is needed for tolerating faults in QCA circuits and systems. The proper functionality of the presented design is checked by computer simulations using the QCADesigner tool. Simulation results confirm our claims and their usefulness in designing robust digital circuits.
  • Keywords
    Quantum-dot cellular automata , Nanoscale circuits , Fault tolerance , Hardware redundancy
  • Journal title
    Signal Processing and Renewable Energy
  • Serial Year
    2020
  • Record number

    2533234