• DocumentCode
    3305325
  • Title

    Two-dimensional AWE technique in fast calculation of microstrip antennas

  • Author

    Xiong, Y. ; Fang, D.G. ; Ling, F.

  • Author_Institution
    Sch. of Electron. & Photoelectric Technol., Nanjing Univ. of Sci. & Technol., China
  • fYear
    2002
  • fDate
    17-19 Aug. 2002
  • Firstpage
    393
  • Lastpage
    396
  • Abstract
    The method of moments (MoM) in conjunction with the two-dimensional asymptotic waveform evaluation (AWE) (E.K. Miller, IEEE Antennas and Propag. Mag., vol. 40, no. 1, pp. 40-52, 1998; ibid., vol. 40, no. 2, pp. 51-65, 1998; ibid., vol. 40, no. 3, pp. 49-66, 1998) is applied to calculate both input impedance response in terms of frequency and substrate parameters for a microstrip antenna simultaneously. The hybrid field integral equation of the microstrip patch irradiated by a current source is first converted into a matrix equation using MoM and Green´s functions of the substrate. In the AWE method, the derivatives of Green´s function are required. A closed form of microstrip Green´s function is used for this requirement. Then, the matrix equation of frequency and permittivity derivatives can be obtained from the original matrix equation. With these matrices in hand, coefficients of the two-dimensional Pade polynomial can be obtained by using AWE technique in simultaneous frequency and permittivity extrapolation. Numerical results demonstrate the accuracy and efficiency of this technique.
  • Keywords
    Green´s function methods; electric field integral equations; electric impedance; extrapolation; frequency response; matrix algebra; method of moments; microstrip antennas; parameter estimation; permittivity; 2D AWE technique; 2D Pade polynomial; Green´s function derivatives; MoM; asymptotic waveform evaluation; closed form microstrip Green´s function; current source irradiation; frequency derivatives; frequency extrapolation; hybrid field integral equation; input impedance frequency response; matrix equation; method of moments; microstrip antennas; permittivity derivatives; permittivity extrapolation; substrate parameters; Frequency; Green´s function methods; Impedance; Integral equations; Matrix converters; Microstrip antennas; Moment methods; Permittivity; Polynomials; Transmission line matrix methods;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Microwave and Millimeter Wave Technology, 2002. Proceedings. ICMMT 2002. 2002 3rd International Conference on
  • Print_ISBN
    0-7803-7486-X
  • Type

    conf

  • DOI
    10.1109/ICMMT.2002.1187719
  • Filename
    1187719