• DocumentCode
    2155133
  • Title

    Surface impedance characterization for mutual coupling calculation of patches on a dielectric-coated PEC circular cylinder

  • Author

    García-Aguilar, Andrés ; Sipus, Zvonimir ; Sierra-Pérez, Manuel

  • Author_Institution
    Syst. & Radiocommun. Dept., Tech. Univ. of Madrid., Madrid, Spain
  • fYear
    2012
  • fDate
    8-14 July 2012
  • Firstpage
    1
  • Lastpage
    2
  • Abstract
    A novel formulation for the surface impedance characterization is introduced for the canonical problem of surface fields on a perfect electric conductor (PEC) circular cylinder with a dielectric coating due to a electric current source using the Uniform Theory of Diffraction (UTD) with an Impedance Boundary Condition (IBC). The approach is based on a TE/TM assumption of the surface fields from the original problem. Where this surface impedance fails, an optimization is performed to minimize the error in the SD Green´s function between the original problem and the equivalent one with the IBC. This asymptotic method, accurate for large separations between source and observer points, in combination with spectral domain (SD) Green´s functions for multidielectric coatings leads to a new hybrid SD-UTD with IBC to calculate mutual coupling among microstrip patches on a multilayer dielectric-coated PEC circular cylinder. Results are compared with the eigenfunction solution in SD, where a very good agreement is met.
  • Keywords
    Green´s function methods; coatings; conductors (electric); eigenvalues and eigenfunctions; electric impedance; geometrical theory of diffraction; optimisation; spectral analysis; surface impedance; Green´s functions; IBC; PEC circular cylinder; TE-TM assumption; asymptotic method; canonical problem; eigenfunction; electric current source; hybrid SD-UTD; impedance boundary condition; multidielectric coating; mutual coupling; optimization; perfect electric conductor; spectral domain; surface field; surface impedance characterization; uniform theory of diffraction; Boundary conditions; Dielectrics; Impedance; Moment methods; Nonhomogeneous media; Surface impedance; Surface treatment;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Antennas and Propagation Society International Symposium (APSURSI), 2012 IEEE
  • Conference_Location
    Chicago, IL
  • ISSN
    1522-3965
  • Print_ISBN
    978-1-4673-0461-0
  • Type

    conf

  • DOI
    10.1109/APS.2012.6349085
  • Filename
    6349085