• DocumentCode
    2140957
  • Title

    A Fine-grained Dependable Optically Reconfigurable Gate Array as a Multi-soft-core Processor Platform

  • Author

    Moriwaki, Retsu ; Watanabe, Manabu

  • Author_Institution
    Electr. & Electron. Eng., Shizuoka Univ., Hamamatsu, Japan
  • fYear
    2013
  • fDate
    26-28 Sept. 2013
  • Firstpage
    7
  • Lastpage
    12
  • Abstract
    Optically reconfigurable gate arrays (ORGAs) have been developed as high-speed reconfigurable fine grained gate arrays that can accommodate implementation of a multi-soft-core processor. An ORGA´s programmable gate array can be reconfigured in nanosecond-order with one of more than 256 reconfiguration contexts. Its high-speed dynamic reconfiguration capability is suitable for dynamically changing the functions of a multi-core processor. In addition to that beneficial feature, ORGAs have high dependability against space radiation since the ORGA can be reconfigured with an error-included configuration context. In this paper, while maintaining its highly dependable capability, a more advanced dependability-increasing technique using a negative logic implementation is proposed. The dependability of data on a holographic memory depends on the number of bright bits or the binary state H included in a configuration context. If the number of bright bits in a configuration context can be decreased, then the configuration dependability can also be increased. The proposed optical configuration dependability-increasing technique of a negative logic implementation can decrease the number of bright bits in a configuration context. This technique can raise the ORGA´s configuration dependability level even further. This paper describes an experimental demonstration of the usefulness of the proposed technique.
  • Keywords
    data integrity; holographic storage; multiprocessing systems; optical interconnections; optical logic; programmable logic arrays; radiation effects; reconfigurable architectures; storage management; binary state; bright bits; configuration dependability; data dependability; error-included configuration context; fine-grained dependable optically reconfigurable gate array; high-speed dynamic reconfiguration capability; high-speed reconfigurable fine grained gate ORGA programmable gate array; holographic memory; multi-soft-core processor platform; nanosecond-order reconfiguration; negative logic implementation; space radiation; Multicore processing; System-on-chip; Dependable systems; FPGA; ORGA;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Embedded Multicore Socs (MCSoC), 2013 IEEE 7th International Symposium on
  • Conference_Location
    Tokyo
  • Type

    conf

  • DOI
    10.1109/MCSoC.2013.33
  • Filename
    6657896