Power/Ground Mesh Area Optimization Using Multigrid-Based Technique

In this paper, we present a novel multigrid-based technique for power/ground mesh area optimization subject to reliability constraints. The multigrid-based technique is applied to reduce a large-scale mesh to a much coarser one. The reduced mesh can be efficiently optimized. The solution for the ori...

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Published inDesign, Automation, and Test in Europe: Proceedings of the conference on Design, Automation and Test in Europe - Volume 1; 03-07 Mar. 2003 p. 10850
Main Authors Wang, Kai, Marek-Sadowska, Malgorzata
Format Conference Proceeding
LanguageEnglish
Published Washington, DC, USA IEEE Computer Society 03.03.2003
SeriesACM Conferences
Subjects
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ISBN0769518702
9780769518701
ISSN1530-1591
DOI10.5555/789083.1022830

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Summary:In this paper, we present a novel multigrid-based technique for power/ground mesh area optimization subject to reliability constraints. The multigrid-based technique is applied to reduce a large-scale mesh to a much coarser one. The reduced mesh can be efficiently optimized. The solution for the original mesh is then computed using a back-mapping process. Experimental results are very encouraging. Large-scale power/ground meshes with millions of nodes can be solved in a few minutes. The proposed technique not only speeds up the optimization process significantly without compromising the quality of solutions, but also brings up a possibility of incorporating the power/ground mesh optimization into other physical design stages such as signal routing.
Bibliography:SourceType-Conference Papers & Proceedings-1
ObjectType-Conference Paper-1
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ISBN:0769518702
9780769518701
ISSN:1530-1591
DOI:10.5555/789083.1022830