• DocumentCode
    1322
  • Title

    Transversal Asymmetry in Periodic Leaky-Wave Antennas for Bloch Impedance and Radiation Efficiency Equalization Through Broadside

  • Author

    Otto, S. ; Al-Bassam, Amar ; Rennings, Andreas ; Solbach, Klaus ; Caloz, C.

  • Author_Institution
    IMST GmbH, Kamp-Lintfort, Germany
  • Volume
    62
  • Issue
    10
  • fYear
    2014
  • fDate
    Oct. 2014
  • Firstpage
    5037
  • Lastpage
    5054
  • Abstract
    This paper demonstrates that unit cell asymmetry with respect to the transversal axis -or transversal asymmetry- is an essential design parameter in periodic leaky-wave antennas (P-LWAs). Specifically, it shows that transversal asymmetry can be leveraged to fully and systematically solve the well-known radiation degradation of P-LWAs at broadside, where it provides both open-stopband closure and efficiency equalization. The problem is addressed via a generic equivalent circuit model composed of a series resonator, a shunt resonator and ideal transformers for modeling asymmetry by a single and simple parameter, namely the transformation ratio. Once the series and shunt frequencies have been balanced (frequency-balancing), equalization is ensured by adjusting the degree of asymmetry in the unit cell so to match the at-broadside Bloch impedance to the off-broadside Bloch impedance. This equalization condition is referred to as quality factor balancing ( Q-balancing) and it is related to the Heaviside condition (distortionless propagation) in homogeneous transmission lines. Based on this theory, optimization schemes for employing commercial fullwave eigenmode and drivenmode solvers are proposed to design unit cells with equalized efficiencies. Finally, two examples of P-LWAs are presented, a composite right/left-handed (CRLH) P-LWA and a series-fed coupled patch (SFCP) P-LWA, and verified to fully confirm the predictions of the theory obtained by circuit modeling.
  • Keywords
    Q-factor; antenna arrays; antenna radiation patterns; eigenvalues and eigenfunctions; equivalent circuits; impedance matching; leaky wave antennas; metamaterials; optimisation; resonators; telecommunication transmission lines; CRLH P-LWA; SFCP P-LWA; antenna radiation degradation; broadside Bloch impedance matching; circuit modeling; composite right-left-handed; equivalent circuit model; essential design parameter; fullwave eigenmode; homogeneous transmission lines; off-broadside Bloch impedance; optimization scheme; periodic leaky wave antenna; quality factor balancing; radiation efficiency equalization; series fed coupled patch; series frequency; series resonator; shunt frequency; shunt resonator; transformers; transversal asymmetry; unit cell asymmetry; Harmonic analysis; Impedance; Integrated circuit modeling; Lattices; Propagation constant; Resonant frequency; Shunts (electrical); ${rm Q}$-balancing; Band-gap; Bloch impedance; broadside radiation; complex frequency; equalization; frequency-balancing; leaky-wave antenna (LWA); open-stopband; periodic boundary conditions; quality factor; radiation efficiency; transversal asymmetry;
  • fLanguage
    English
  • Journal_Title
    Antennas and Propagation, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-926X
  • Type

    jour

  • DOI
    10.1109/TAP.2014.2343621
  • Filename
    6867288