• DocumentCode
    2200757
  • Title

    Process variability robust energy-efficient control for nano-scaled complex SoCs

  • Author

    Zakaria, Hatem ; Fesquet, Laurent

  • Author_Institution
    CIS Group, Grenoble Univ., Grenoble, France
  • fYear
    2011
  • fDate
    May 30 2011-June 1 2011
  • Firstpage
    95
  • Lastpage
    98
  • Abstract
    The design of complex systems-on-chip (SoCs) in the upcoming CMOS technologies has become increasingly challenging due to the high levels of integration, the excessive energy consumption and the increased process variability impact. To deal with these issues, we consider network-on-chip (NoC) architectures partitioned into several voltage-frequency domains and propose an efficient control algorithm for on-the-fly workload monitoring and management. This algorithm is able to cope with the technology-related variability and with the variable workload of the system. It dynamically controls the speed of the different voltage-frequency islands with respect to the process variability impact on each island. Simulation results demonstrate the effectiveness of our approach in guarantying the average speed performance of the system under different cases of the process variability effect while keeping reduced the overall system energy consumption. Moreover, this is achieved with a small area overhead. The results have been validated on a MIPS R2000 processor node using the 45nm CMOS technology from STMicroelectronics.
  • Keywords
    CMOS integrated circuits; integrated circuit design; network-on-chip; CMOS technologies; complex systems-on-chip design; nano-scaled complex SoC; network-on-chip architectures; process variability effect; process variability robust energy-efficient control; size 45 nm; technology-related variability; voltage-frequency domains; voltage-frequency islands; Clocks; Control systems; Energy consumption; Energy efficiency; Frequency control; Process control; Voltage control; CMOS process variability; DVFS; Yield;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Faible Tension Faible Consommation (FTFC), 2011
  • Conference_Location
    Marrakech
  • Print_ISBN
    978-1-61284-646-0
  • Type

    conf

  • DOI
    10.1109/FTFC.2011.5948928
  • Filename
    5948928