• DocumentCode
    67161
  • Title

    Compact Time-Domain Models of Complex RF Structures Based on the Real Eigenmodes of Segments

  • Author

    Flisgen, Thomas ; Glock, H. ; van Rienen, Ursula

  • Author_Institution
    Fak. fur Inf. und Elektrotechnik (IEF), Univ. Rostock, Rostock, Germany
  • Volume
    61
  • Issue
    6
  • fYear
    2013
  • fDate
    Jun-13
  • Firstpage
    2282
  • Lastpage
    2294
  • Abstract
    Wideband modeling of complex loss-free isotropic RF structures is a challenging task in electrical engineering. This paper presents a new formalism to create compact wideband equivalent models of complex RF structures. In a first step, the complex structure is partitioned into segments. On the basis of the segment´s eigenmodes with either vanishing tangential electric or magnetic fields on the boundary and a correction term, systems of ordinary differential equations (ODEs) are derived. In consequence, real eigenvalue problems need to be solved for each segment in addition to the actual field distribution in the segment, which only needs to be computed for a small number of discrete frequency samples for the correction term. Linking the established ODE systems of the segments with a suitable concatenation scheme leads to an ODE system for the entire structure. This system allows the computation of complex structure responses because of transient port excitation and the determination of transient 3-D fields in the structure. As a side product, the frequency-domain transfer function of the complex structure is available. Besides the theoretical derivations, two validation examples for the time-domain scheme are presented. These examples show that the method provides a good approximation of the transient processes in the structures under consideration.
  • Keywords
    computational electromagnetics; differential equations; eigenvalues and eigenfunctions; frequency-domain analysis; time-domain analysis; ODE; compact time-domain model; compact wideband equivalent model; complex RF structure; complex loss-free isotropic RF structure; concatenation scheme; eigenmodes; eigenvalue problem; electrical engineering; field distribution; frequency-domain transfer function; magnetic field; ordinary differential equation; tangential electric field; time-domain scheme; transient 3D field; transient port excitation; wideband modeling; Computational electromagnetics; differential equations; eigenmodal expansion; guided wave structures; impedance parameters; scattering parameters; time-domain analysis; waveguide boundary condition; wideband equivalent model;
  • fLanguage
    English
  • Journal_Title
    Microwave Theory and Techniques, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9480
  • Type

    jour

  • DOI
    10.1109/TMTT.2013.2260765
  • Filename
    6517316