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Aperture-coupled patch antenna on UC-PBG substrate

IEEE Transactions on Microwave Theory and Techniques · 1999 · Vol. 47(11) · pp. 2123–2130
R. CoccioliFei-Ran YangKuang-Ping MaT. Itoh

Abstract

The recently developed uniplanar compact photonic bandgap (UC-PBG) substrate is successfully used to reduce surface-wave losses for an aperture-coupled fed patch antenna on a thick high dielectric-constant substrate. The surface-wave dispersion diagram of the UC-PBG substrate has been numerically computed for two different substrate thickness (25 and 50 mil) and found to have a complete stopband in the frequency range of 10.9-13.5 and 11.4-12.8 GHz, respectively. The thicker substrate is then used to enhance broadside gain of a patch antenna working in the stopband at 12 GHz. Computed results and measured data show that, due to effective surface-wave suppression, the antenna mounted on the UC-PBG substrate has over 3-dB higher gain in the broadside direction than the same antenna etched on a grounded dielectric slab with same thickness and dielectric constant. Cross-polarization level remains 13 dB down the co-polar component level for both E- and H-planes.

Microwave Engineering and WaveguidesAdvanced Antenna and Metasurface TechnologiesAntenna Design and AnalysisMaterials scienceStopbandOpticsMicrostrip antennaDielectricPatch antennaBroadsideOptoelectronicsSubstrate (aquarium)Antenna (radio)

Funding

  • University of California, Los Angeles
Citations
470
FWCI
20.55
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17
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References
An anisotropic perfectly matched layer-absorbing medium for the truncation of FDTD lattices
IEEE Transactions on Antennas and Propagation · 1996 · 1,297 citations
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