• DocumentCode
    1522612
  • Title

    Acceleration of Mixed Potentials From Vertical Currents in Layered Media for 2-D Structures With 1-D Periodicity

  • Author

    Valerio, Guido ; Wilton, Donald R. ; Jackson, David R. ; Galli, Alessandro

  • Author_Institution
    IETR (Inst. d´´Electron. et des Telecommun. de Rennes), Rennes, France
  • Volume
    60
  • Issue
    8
  • fYear
    2012
  • Firstpage
    3782
  • Lastpage
    3793
  • Abstract
    An original acceleration procedure is proposed for the efficient calculation of the vertical components of the dyadic and scalar mixed-potential layered-media periodic Green´s functions. The extraction of suitable asymptotic terms, i.e., quasi-static images, is performed in order to speed up the convergence of the relevant spectral series. This procedure, well known for planar Green´s functions, is here generalized to treat the off-diagonal dyadic components and the corrective scalar potential arising from the vertical currents. The extracted terms are homogeneous-medium Green´s functions due to a periodic phased array of half-plane currents, computed through a modified Ewald method, leading to a pair of Gaussian-convergent series. The highly improved convergence rate of the relevant series is shown, and the reduction of the computation time is numerically tested and discussed. The algorithm is implemented in EIGER, an open-source code based on the method of moments; several periodic structures are analyzed and fully validated through numerical comparisons. The proposed formulation has been proven very efficient, accurate, and stable.
  • Keywords
    Green´s function methods; antenna phased arrays; metamaterials; multilayers; 1-D periodicity; 2-D structures; EIGER; computation time; dyadic layered media; half-plane currents; method of moments; mixed potentials; modified Ewald method; open-source code; original acceleration procedure; periodic phased array; planar Green´s functions; scalar mixed-potential layered-media; vertical currents; Acceleration; Arrays; Convergence; Electric potential; Green´s function methods; Harmonic analysis; Periodic structures; Acceleration methods; Ewald method; Green´s functions; layered media; metamaterials; mixed potentials; periodic structures;
  • fLanguage
    English
  • Journal_Title
    Antennas and Propagation, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-926X
  • Type

    jour

  • DOI
    10.1109/TAP.2012.2201100
  • Filename
    6204073