Surface Wave Suppression for Improved Isolation and Bore-Sight Gain Based on Dipole Moment Conversion

  • Nguyen, T.H.
  • Kim, Y.
  • Park, J.
  • Ahn, S.
  • Joo, J.
  • ... Choo, H.
  • 외 1명
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초록

This article proposes a novel approach to surface wave suppression based on dipole moment conversion for isolation and bore-sight gain improvement. To transform the power associated with the surface wave into the source of the radiating wave, an inverted-L shape composed of a thin strip with a via post is adopted. Unlike the conventional mushroom structure, the via post is placed at the leading edge of the strip, so that the longitudinal edge of the strip is aligned with the propagation direction of the surface wave. This inverted-L structure plays a key role in converting the vertical electric dipole moment to the horizontal component, and the conversion efficiency can be further improved by arranging the structure with a narrower interval of 0.057λ in the axis perpendicular to the propagation direction. For validation, multipole moments are calculated from induced currents, and the proposed metasurface is fabricated for two array configurations. Scattering parameters and near- and far-fields are measured to demonstrate the proposed approach experimentally. The fabricated metasurface shows an operating frequency band from 9.74 GHz to 10.62 GHz, and its average isolation and bore-sight gain are improved by 6.3 dB and 1.6 dB, respectively, without any severe distortion on impedance matching. IEEE

키워드

Antenna arraysdipole moment conversionIntegrated circuit modelingisolation improvementmetasurfaceMetasurfacesMicrostrip antennasStripsSurface impedanceSurface wave suppressionSurface wavesMUTUAL COUPLING REDUCTIONISOLATION ENHANCEMENTANTENNA-ARRAYEBG STRUCTUREMETAMATERIALBAND
제목
Surface Wave Suppression for Improved Isolation and Bore-Sight Gain Based on Dipole Moment Conversion
저자
Nguyen, T.H.Kim, Y.Park, J.Ahn, S.Joo, J.Choo, H.Byun, G.
DOI
10.1109/TAP.2022.3211339
발행일
2022-12-01
유형
Article
저널명
IEEE Transactions on Antennas and Propagation
70
12
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