DocumentCode
79181
Title
Guaranteed Passive Parameterized Macromodeling by Using Sylvester State-Space Realizations
Author
Samuel, Elizabeth Rita ; Knockaert, Luc ; Ferranti, Francesco ; Dhaene, Tom
Author_Institution
Ghent Univ. - IBBT, Ghent, Belgium
Volume
61
Issue
4
fYear
2013
fDate
Apr-13
Firstpage
1444
Lastpage
1454
Abstract
A novel state-space realization for parameterized macromodeling is proposed in this paper. A judicious choice of the state-space realization is required in order to account for the assumed smoothness of the state-space matrices with respect to the design parameters. This technique is used in combination with suitable interpolation schemes to interpolate a set of state-space matrices, and hence the poles and residues indirectly, in order to build accurate parameterized macromodels. The key points of the novel state-space realizations are the choice of a proper pivot matrix and a well-conditioned solution of a Sylvester equation. Stability and passivity are guaranteed by construction over the design space of interest. Pertinent numerical examples validate the proposed Sylvester realization for parameterized macromodeling.
Keywords
interpolation; modelling; stability; state-space methods; Sylvester equation; Sylvester state-space realizations; design parameters; guaranteed passive parameterized macromodeling; interpolation schemes; pivot matrix; state-space matrices; Equations; Interpolation; Kernel; Linear matrix inequalities; Mathematical model; Stability analysis; Transfer functions; Interpolation; Sylvester equation; parameterized macromodeling; rational approximation; state-space matrices;
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/TMTT.2013.2247049
Filename
6473855
Link To Document