DocumentCode :
32259
Title :
Matrix-Interpolation-Based Parametric Model Order Reduction for Multiconductor Transmission Lines With Delays
Author :
Samuel, Elizabeth Rita ; Knockaert, Luc ; Dhaene, Tom
Author_Institution :
Ghent Univ.-iMinds, Ghent, Belgium
Volume :
62
Issue :
3
fYear :
2015
fDate :
Mar-15
Firstpage :
276
Lastpage :
280
Abstract :
A novel parametric model order reduction technique based on matrix interpolation for multiconductor transmission lines (MTLs) with delays having design parameter variations is proposed in this brief. Matrix interpolation overcomes the oversize problem caused by input-output system-level interpolation-based parametric macromodels. The reduced state-space matrices are obtained using a higher-order Krylov subspace-based model order reduction technique, which is more efficient in comparison to the Gramian-based parametric modeling in which the projection matrix is computed using a Cholesky factorization. The design space is divided into cells, and then the Krylov subspaces computed for each cell are merged and then truncated using an adaptive truncation algorithm with respect to their singular values to obtain a compact common projection matrix. The resulting reduced-order state-space matrices and the delays are interpolated using positive interpolation schemes, making it computationally cheap and accurate for repeated system evaluations under different design parameter settings. The proposed technique is successfully applied to RLC (R-resistor, L-inductor, C-capacitance) and MTL circuits with delays.
Keywords :
RLC circuits; interpolation; matrix decomposition; multiconductor transmission lines; reduced order systems; state-space methods; synchronisation; Cholesky factorization; Gramian-based parametric modeling; Krylov subspace; MTL circuits; RLC circuit; adaptive truncation; input-output system-level interpolation; matrix interpolation; model order reduction technique; multiconductor transmission lines; parametric macromodels; parametric model order reduction; projection matrix; reduced-order state-space matrices; Computational modeling; Delays; Estimation; Integrated circuit modeling; Interpolation; RLC circuits; Transmission line matrix methods; Delayed systems; Krylov subspaces; Parametric model order reduction; delayed systems; interpolation; parametric model order reduction (PMOR); projection matrix; singular values;
fLanguage :
English
Journal_Title :
Circuits and Systems II: Express Briefs, IEEE Transactions on
Publisher :
ieee
ISSN :
1549-7747
Type :
jour
DOI :
10.1109/TCSII.2014.2368611
Filename :
6949631
Link To Document :
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