• DocumentCode
    2524016
  • Title

    Analytical approach to massively parallel architectures for nanotechnologies

  • Author

    Jäger, Björn ; Niemann, Jörg-Christian ; Rückert, Ulrich

  • Author_Institution
    Heinz Nixdorf Inst., Paderborn Univ., Germany
  • fYear
    2005
  • fDate
    23-25 July 2005
  • Firstpage
    268
  • Lastpage
    275
  • Abstract
    In the emerging field of single-chip multiprocessors (CMP), analytical models of performance and power consumption are necessary for design space exploration and the analysis of existing architectures. In the light of ever decreasing structure sizes in microchips the scalability of proposed CMPs is of great interest to the developers. Looking even further into the future at the possibilities offered by, e. g., nanotechnology, a set of such models may help to identify promising architectures and possible bottlenecks even before the enabling technologies exist. In this paper, we present our current work in this area in the form of two models. The first and very basic model is based on Amdahl´s law and gives a first promising outlook on chip multiprocessing. Based on the more complex BSP model, our second model takes the on-chip communication into account and thus allows a much more detailed look at the architecture. In both cases, basic laws of circuit technology have been combined with the underlying models that now take the effects of device scaling into account. Later, we also present the GigaNetIC architecture, a CMP developed by our research group. It was then analyzed by applying the BSP-based model.
  • Keywords
    microprocessor chips; multiprocessing systems; nanotechnology; parallel architectures; power consumption; system-on-chip; Amdahl law; BSP model; GigaNetIC architecture; chip multiprocessing; circuit technology; design space exploration and; microchip; nanotechnology; on-chip communication; parallel architecture; power consumption; single-chip multiprocessor; Analytical models; CMOS technology; Circuits; Energy consumption; Parallel architectures; Performance analysis; Space exploration; Space technology; System-on-a-chip; Tiles;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Application-Specific Systems, Architecture Processors, 2005. ASAP 2005. 16th IEEE International Conference on
  • ISSN
    2160-0511
  • Print_ISBN
    0-7695-2407-9
  • Type

    conf

  • DOI
    10.1109/ASAP.2005.14
  • Filename
    1540396