• DocumentCode
    26042
  • Title

    Distributed On-Chip Switched-Capacitor DC–DC Converters Supporting DVFS in Multicore Systems

  • Author

    Pingqiang Zhou ; Paul, A. ; Kim, Chul Han ; Sapatnekar, Sachin S.

  • Author_Institution
    Sch. of Inf. Sci. & Technol., Shanghai Tech Univ., Shanghai, China
  • Volume
    22
  • Issue
    9
  • fYear
    2014
  • fDate
    Sept. 2014
  • Firstpage
    1954
  • Lastpage
    1967
  • Abstract
    Dynamic voltage and frequency scaling (DVFS) is a powerful technique to reduce power consumption in a chip multiprocessor. To support DVFS in the multicore power delivery network, we integrate on-chip switched-capacitor (SC) dc-dc converters that can work with multiple conversion ratios to provide varying levels of Vdd supplies. We study the application of such SC converters in multicore chips by simulation. Our results show that distributed SC converters can significantly reduce the voltage droop seen by the local core loads by providing better localized power regulation. Considering the fact that the current distribution in a multicore chip is unbalanced, we further develop computer-aided design techniques to automate the design (size) and distribution (number and location) of these SC converters, using the efficiency of the whole power delivery system as the optimization metric. This is a major concern, but has not been addressed at the system level in prior research. We develop models for the power loss of such a system as a function of size and distribution of the SC converters, then propose an approach to optimize the SC converters to maximize the efficiency of the system, while considering all the possible conversion ratios an SC converter can work with. We verify the accuracy of our models for the power loss in the power delivery system, and demonstrate the efficiency of our techniques to optimize the SC converters on both homogenous and heterogenous multicore chips.
  • Keywords
    DC-DC power convertors; circuit CAD; integrated circuit design; low-power electronics; microprocessor chips; multiprocessing systems; switched mode power supplies; DVFS; chip multiprocessor; computer aided design techniques; distributed on-chip switched capacitor DC-DC converters; dynamic frequency scaling; dynamic voltage scaling; multicore chip; multicore power delivery network; multicore system; voltage droop reduction; Capacitors; Multicore processing; Solid modeling; Switches; System-on-chip; Topology; Voltage control; Chip multiprocessor (CMP); MILP; dynamic voltage and frequency scaling (DVFS); efficiency; on-chip switched-capacitor dc-dc converter.; on-chip switched-capacitor dc??dc converter;
  • fLanguage
    English
  • Journal_Title
    Very Large Scale Integration (VLSI) Systems, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1063-8210
  • Type

    jour

  • DOI
    10.1109/TVLSI.2013.2280139
  • Filename
    6609141