• DocumentCode
    1117145
  • Title

    Fast Passivity Enforcement for Pole-Residue Models by Perturbation of Residue Matrix Eigenvalues

  • Author

    Gustavsen, Bjørn

  • Author_Institution
    SINTEF Energy Res., Trondheim
  • Volume
    23
  • Issue
    4
  • fYear
    2008
  • Firstpage
    2278
  • Lastpage
    2285
  • Abstract
    Rational models must be passive in order to avoid unstable time domain simulations. This paper introduces a fast approach for passivity enforcement of pole-residue models. This is achieved by perturbing the eigenvalues of the residue matrices, as opposed to the existing approach of perturbing matrix elements. This leads to large savings in computation time with only a small increase of the modeling error. This fast residue perturbation (FRP) approach is merged with the modal perturbation technique, leading to fast modal perturbation (FMP). Usage of FMP over FRP achieves to retain the relative accuracy of the admittance matrix eigenvalues. A complete approach is obtained by combining the passivity enforcement step with passivity assessment via the Hamiltonian matrix eigenvalues and a robust iteration scheme, giving a guaranteed passive model. Application of FMP to a six-port power transformer shows that the approach is able to remove large out-of band passivity violations without corrupting the in-band behavior. This is shown to mitigate an unstable simulation. The approach is also demonstrated for a high-speed interconnect and a transmission line.
  • Keywords
    eigenvalues and eigenfunctions; iterative methods; matrix algebra; power transformers; Hamiltonian matrix eigenvalues; fast passivity enforcement; fast residue perturbation approach; iteration scheme; modal perturbation technique; pole-residue models; power transformer; residue matrix eigenvalues; time domain simulations; transmission line; Macromodel; passivity enforcement; rational model; stability; transformer; vector fitting;
  • fLanguage
    English
  • Journal_Title
    Power Delivery, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0885-8977
  • Type

    jour

  • DOI
    10.1109/TPWRD.2008.919027
  • Filename
    4480136