FDTD Algorithm for Microstrip Antennas with Lossy Substrates Using Higher Order Schemes.

Higher order spatial schemes are applied to approximate the derivatives of the conducting Maxwell's equations and an analytical study regarding the stability properties and the numerical dispersion of the N-order-in-space and second-order-in-time technique is considered. The hard-to-model effect of...

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Publicado en:Studia Theologica Vol. 58; no. 1; pp. 301 - 316
Autores principales: Prokopidis, Konstantinos P., Tsiboukis, Theodoros D.
Formato: Artículo
Publicado: Taylor & Francis Ltd 2004
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Acceso en línea:Ver este registro en EBSCOhost
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        atl: FDTD Algorithm for Microstrip Antennas with Lossy Substrates Using Higher Order Schemes.
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        au:
          Prokopidis, Konstantinos P.
          Tsiboukis, Theodoros D.
        affil: Applied and Computational Electromagnetics Laboratory Department of Electrical and Computer Engineering Aristotle University of Thessaloniki, Thessaloniki, Greece
      su:
        Microstrip antennas
        Strip transmission lines
        Microwave antennas
        Electromagnetism
        Electromagnetic induction
        Magnetism
      sug:
        subj:
          Microstrip antennas
          Strip transmission lines
          Microwave antennas
          Electromagnetism
          Electromagnetic induction
          Magnetism
      keyword:
        FDTD methods
        higher order schemes
        numerical dispersion
      ab: Higher order spatial schemes are applied to approximate the derivatives of the conducting Maxwell's equations and an analytical study regarding the stability properties and the numerical dispersion of the N-order-in-space and second-order-in-time technique is considered. The hard-to-model effect of dielectric losses on microstrip antennas is investigated and their performance is demonstrated using a fourth-orderin-space and second-order-in-time, finite-difference time-domain scheme in threedimensional calculations.
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    language: English
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