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Passivity-preserving parametric macromodeling for highly dynamic tabulated data based on Lur'e equations

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Abstract
We present a new method for the construction of parametric macromodels for admittance and impedance input-output representations starting from multivariate data samples that depend on frequency and additional design variables such as geometric and material parameters. Poles and residues are parameterized indirectly, while stability and passivity of the parametric macromodel are guaranteed over a user defined range of design parameter values. Pertinent numerical examples validate the proposed parametric macromodeling approach.
Keywords
Interpolation, passivity, rational approximation, parametric macromodeling, Lur'e equations, FREQUENCY-DOMAIN, ENFORCEMENT, APPROXIMATION, MODELS, TIME

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Chicago
Ferranti, Francesco, Luc Knockaert, Tom Dhaene, and Giulio Antonini. 2010. “Passivity-preserving Parametric Macromodeling for Highly Dynamic Tabulated Data Based on Lur’e Equations.” Ieee Transactions on Microwave Theory and Techniques 58 (12): 3688–3696.
APA
Ferranti, F., Knockaert, L., Dhaene, T., & Antonini, G. (2010). Passivity-preserving parametric macromodeling for highly dynamic tabulated data based on Lur’e equations. IEEE TRANSACTIONS ON MICROWAVE THEORY AND TECHNIQUES, 58(12), 3688–3696. Presented at the IEEE International symposium on Radio-Frequency Integration Technology.
Vancouver
1.
Ferranti F, Knockaert L, Dhaene T, Antonini G. Passivity-preserving parametric macromodeling for highly dynamic tabulated data based on Lur’e equations. IEEE TRANSACTIONS ON MICROWAVE THEORY AND TECHNIQUES. 2010;58(12):3688–96.
MLA
Ferranti, Francesco, Luc Knockaert, Tom Dhaene, et al. “Passivity-preserving Parametric Macromodeling for Highly Dynamic Tabulated Data Based on Lur’e Equations.” IEEE TRANSACTIONS ON MICROWAVE THEORY AND TECHNIQUES 58.12 (2010): 3688–3696. Print.
@article{1163364,
  abstract     = {We present a new method for the construction of parametric macromodels for admittance and impedance input-output representations starting from multivariate data samples that depend on frequency and additional design variables such as geometric and material parameters. Poles and residues are parameterized indirectly, while stability and passivity of the parametric macromodel are guaranteed over a user defined range of design parameter values. Pertinent numerical examples validate the proposed parametric macromodeling approach.},
  author       = {Ferranti, Francesco and Knockaert, Luc and Dhaene, Tom and Antonini, Giulio},
  issn         = {0018-9480},
  journal      = {IEEE TRANSACTIONS ON MICROWAVE THEORY AND TECHNIQUES},
  keyword      = {Interpolation,passivity,rational approximation,parametric macromodeling,Lur'e equations,FREQUENCY-DOMAIN,ENFORCEMENT,APPROXIMATION,MODELS,TIME},
  language     = {eng},
  location     = {Singapore, Singapore},
  number       = {12},
  pages        = {3688--3696},
  title        = {Passivity-preserving parametric macromodeling for highly dynamic tabulated data based on Lur'e equations},
  url          = {http://dx.doi.org/10.1109/TMTT.2010.2083910},
  volume       = {58},
  year         = {2010},
}

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