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Enhanced patch-antenna performance by suppressing surface waves using photonic-bandgap substrates

IEEE Transactions on Microwave Theory and Techniques · 1999 · Vol. 47(11) · pp. 2131–2138
R. GonzaloP. de MaagtM. Sorolla

Abstract

The microstrip patch antenna is a low-profile robust planar structure. A wide range of radiation patterns can be achieved with this type of antenna and, due to the ease of manufacture, is inexpensive compared with other types of antennas. However, patch-antenna designs have some limitations such as restricted bandwidth of operation, low gain, and a potential decrease in radiation efficiency due to surface-wave losses. In this paper, a photonic-bandgap (PBG) substrate for patch antennas is proposed, which minimizes the surface-wave effects. In order to verify the performance of this kind of substrate, a configuration with a thick substrate is analyzed. The PBG patch antenna shows significantly reduced levels of surface modes compared to conventional patch antennas, thus improving the gain and far-field radiation pattern.

Advanced Antenna and Metasurface TechnologiesMicrowave Engineering and WaveguidesAntenna Design and AnalysisPatch antennaMicrostrip antennaMaterials scienceRadiation patternOptoelectronicsAntenna efficiencyPhotonic crystalPlanarOpticsAntenna (radio)

Funding

  • Universidad Pública de Navarra
Citations
482
FWCI
473.57
field-weighted impact
References
22
Percentile
100%
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