• DocumentCode
    1263342
  • Title

    Dual Linearly-Polarized Unit-Cells With Nearly 2-Bit Resolution For Reflectarray Applications In X-Band

  • Author

    Pereira, Rui ; Gillard, Raphael ; Sauleau, Ronan ; Potier, Patrick ; Dousset, T. ; Delestre, X.

  • Author_Institution
    Inst. d´Electron. et de Telecommun. de Rennes (IETR), Rennes, France
  • Volume
    60
  • Issue
    12
  • fYear
    2012
  • Firstpage
    6042
  • Lastpage
    6048
  • Abstract
    A fully reconfigurable dual linearly-polarized phase-shifting unit-cell for reflectarrays is proposed in X-band. It consists of two orthogonal and symmetrical cross-type printed triangular dipoles loaded by 2 × 4 pin diodes. To keep independent phase responses both in vertical and horizontal polarizations and to minimize cross-polarization (by preserving the cell symmetry), the diodes are driven by pairs, leading to a maximum possible phase resolution of 2 bits per polarization. Two alternative solutions are described to bias the diode pairs. The corresponding phase responses of the unit-cell are compared for symmetrical and non-symmetrical diode loading of the dipole arms. The numerical results show that the biasing solution with no central via is more robust. They are validated experimentally around 8 GHz. The measured average loss and equivalent bit resolution at the central frequency equal 1.25 dB and 1.8 bit respectively.
  • Keywords
    dipole antenna arrays; electromagnetic wave polarisation; microstrip antenna arrays; p-i-n diodes; reflectarray antennas; -symmetrical diode; PIN diode; X-band reflectarray application; average loss measurement; cell symmetry; cross-polarization minimization; equivalent bit resolution; horizontal polarization; loss 1.25 dB; maximum possible phase resolution; orthogonal cross-type printed triangular dipole; reconfigurable dual linearly-polarized phase-shifting unit-cell; symmetrical cross-type printed triangular dipole; symmetrical diode; vertical polarization; word length 1.8 bit; word length 2 bit; Frequency response; Load modeling; Loading; PIN photodiodes; Reflection; Robustness; Topology; Dual-linear polarization; reconfigurable unit-cell; reflectarray antenna;
  • fLanguage
    English
  • Journal_Title
    Antennas and Propagation, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-926X
  • Type

    jour

  • DOI
    10.1109/TAP.2012.2213051
  • Filename
    6266704