Selected inversion for vectorless power grid verification by exploiting locality

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Abstract

Vectorless power grid verification is a practical approach for early stage safety check without input current patterns. The power grid is usually formulated as a linear system and requires intensive matrix inversion and numerous linear programming, which is extremely time-consuming for large scale power grid verification. In this paper, the power grid is represented in the manner of domain-decomposition approach, and we propose a selected inversion technique to reduce the computation cost of matrix inversion for vectorless verification. The locality existence among power grids is exploited to decide which blocks of matrix inversion should be computed while remaining blocks are not necessary. The vectorless verification could be purposefully performed by this manner of selected inversion while previous direct approaches are required to perform full matrix inversion and then discard small entries to reduce the complexity of linear programming. Meanwhile, constraint locality is proposed to improve the verification accuracy. Experimental results show that the proposed approach could achieve significant speedups compared to previous approaches while still guaranteeing the quality of solution accuracy.

Original languageEnglish
Title of host publication2013 IEEE 31st International Conference on Computer Design, ICCD 2013
PublisherIEEE Computer Society
Pages257-263
Number of pages7
ISBN (Print)9781479929870
DOIs
StatePublished - 2013
Externally publishedYes
Event2013 IEEE 31st International Conference on Computer Design, ICCD 2013 - Asheville, NC, United States
Duration: 6 Oct 20139 Oct 2013

Publication series

Name2013 IEEE 31st International Conference on Computer Design, ICCD 2013

Conference

Conference2013 IEEE 31st International Conference on Computer Design, ICCD 2013
Country/TerritoryUnited States
CityAsheville, NC
Period6/10/139/10/13

Keywords

  • IR Drop
  • Locality
  • Selected Inversion
  • Signal Integrity
  • Vectorless Power Grid Verification

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