DocumentCode
2773986
Title
Transient analysis of on-chip power distribution networks using equivalent circuit modeling
Author
Pan, Zhu ; Cai, Yici ; Tan, Sheldon X D ; Luo, Zuying ; Hong, Xianlong
Author_Institution
Dept. of Comput. Sci. & Technol., Tsinghua Univ., Beijing, China
fYear
2004
fDate
2004
Firstpage
63
Lastpage
68
Abstract
This paper presents an efficient method to analyze power distribution networks in the time-domain. Instead of directly analyzing the integration approximated power/ground networks at each time step as previous methods did, the new method first builds the equivalent models for many series RLC-current chains based on their Norton´s form companion models in the original networks, and then the precondition conjugate gradient (PCG) based iterative method is used to solve the reduced networks. The solutions of the original networks then are back solved from that of the reduced networks. Our contribution is the introduction of an efficiency algorithm for reducing RLC power/ground network complexities by exploitation of the regularities in the power/ground networks. Experimental results show that the complexities of reduced networks are typically significantly smaller than that of the original circuits, which makes the new algorithm extremely fast. For instance, power/ground networks with more than one million branches can be solved in a few minutes on modern Sun workstations.
Keywords
RLC circuits; circuit simulation; conjugate gradient methods; equivalent circuits; integrated circuit modelling; iterative methods; transient analysers; transient response; Norton form models; PCG based iterative method; efficiency algorithm; equivalent circuit modeling; on-chip power distribution networks; power/ground network complexity reduction; precondition conjugate gradient method; reduced networks; series RLC-current chains; time-domain transient analysis; Equivalent circuits; Iterative algorithms; Iterative methods; Network-on-a-chip; Power systems; RLC circuits; Sun; Time domain analysis; Time series analysis; Transient analysis;
fLanguage
English
Publisher
ieee
Conference_Titel
Quality Electronic Design, 2004. Proceedings. 5th International Symposium on
Print_ISBN
0-7695-2093-6
Type
conf
DOI
10.1109/ISQED.2004.1283651
Filename
1283651
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