Title :
Passivity-Preserving Model Reduction Using Dominant Spectral-Zero Interpolation
Author :
Ionutiu, Roxana ; Rommes, Joost ; Antoulas, Athanasios C.
Author_Institution :
Dept. of Electr. & Comput. Eng., William Marsh Rice Univ., Houston, TX
Abstract :
In this paper, the dominant spectral-zero method (dominant SZM) is presented, a new passivity-preserving model-reduction method for circuit simulation. Passivity is guaranteed via spectral-zero interpolation, and a dominance criterion is proposed for selecting spectral zeros. Dominant SZM is implemented as an iterative eigenvalue-approximation problem using the subspace-accelerated dominant-pole algorithm. Passive circuits are reduced automatically irrespective of how the original system equations are formulated (e.g., circuit models containing controlled sources or susceptance elements). Dominant SZM gives comparable and often more accurate reduced models than known techniques such as PRIMA, modal approximation, or positive real balanced truncation.
Keywords :
circuit simulation; eigenvalues and eigenfunctions; integrated circuit modelling; interpolation; passive networks; circuit simulation; dominant spectral-zero interpolation; iterative eigenvalue-approximation; modal approximation; passive circuits; passivity-preserving model reduction; positive real balanced truncation; subspace-accelerated dominant-pole; Automatic control; Circuit simulation; Eigenvalues and eigenfunctions; Integrated circuit interconnections; Interpolation; Iterative algorithms; Large-scale systems; Passive circuits; Poles and zeros; Reduced order systems; Circuit simulation; Hamiltonian system; descriptor systems; dominant spectral zeros; eigenvalue problem; interpolation; modal approximation (MA); model reduction; passivity; residues; stability; subspace-accelerated dominant-pole algorithm (SADPA); transfer-function poles;
Journal_Title :
Computer-Aided Design of Integrated Circuits and Systems, IEEE Transactions on
DOI :
10.1109/TCAD.2008.2006160