DocumentCode :
1330058
Title :
Efficient Simulation of Power Grids
Author :
Silva, João M S ; Phillips, Joel R. ; Silveira, Luís Miguel
Author_Institution :
Synopsys, Mountain View, CA, USA
Volume :
29
Issue :
10
fYear :
2010
Firstpage :
1523
Lastpage :
1532
Abstract :
Modern deep sub-micron ultra-large scale integration designs with hundreds of millions of devices require huge grids for power distribution. Such grids, operating with decreasing power supply voltages, are a design limiting factor and accurate analysis of their behavior is of paramount importance as any voltage drops can seriously impact performance or functionality. As power grid models have millions of unknowns, highly optimized special-purpose simulation tools are required to handle the time and memory complexity of solving for their dynamic behavior. In this paper, we propose a hierarchical matrix representation of the power grid model that is both space and time efficient. With this representation, reduced storage matrix factors are efficiently computed and applied in the analysis at every time-step of the simulation. Results show an almost linear complexity growth, namely O(n loga(n)), for some small constant a, in both space and time, when using this matrix representation. Comparisons of our academic implementation with production-quality code prove this method to be very efficient when dealing with the simulation of large power grid models.
Keywords :
ULSI; circuit complexity; integrated circuit design; integrated circuit modelling; matrix algebra; deep submicron ultralarge scale integration designs; hierarchical matrix representation; limiting factor; linear complexity growth; power distribution; power grid models; power grid simulation; power supply voltages; production-quality code; storage matrix factor reduction; voltage drops; Analytical models; Approximation methods; Complexity theory; Computational modeling; Load modeling; Power grids; Sparse matrices; Cholesky decomposition; hierarchical matrices; power-grid analysis; power-grid simulation; power-grid-modeling;
fLanguage :
English
Journal_Title :
Computer-Aided Design of Integrated Circuits and Systems, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0070
Type :
jour
DOI :
10.1109/TCAD.2010.2061512
Filename :
5580215
Link To Document :
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