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Artificial magnetic conductor surfaces and their application to low-profile high-gain planar antennas

IEEE Transactions on Antennas and Propagation · 2005 · Vol. 53(1) · pp. 209–215
Alexandros FeresidisGeorge GoussetisShenhong WangJ.C. Vardaxoglou

Abstract

Planar periodic metallic arrays behave as artificial magnetic conductor (AMC) surfaces when placed on a grounded dielectric substrate and they introduce a zero degrees reflection phase shift to incident waves. In this paper the AMC operation of single-layer arrays without vias is studied using a resonant cavity model and a new application to high-gain printed antennas is presented. A ray analysis is employed in order to give physical insight into the performance of AMCs and derive design guidelines. The bandwidth and center frequency of AMC surfaces are investigated using full-wave analysis and the qualitative predictions of the ray model are validated. Planar AMC surfaces are used for the first time as the ground plane in a high-gain microstrip patch antenna with a partially reflective surface as superstrate. A significant reduction of the antenna profile is achieved. A ray theory approach is employed in order to describe the functioning of the antenna and to predict the existence of quarter wavelength resonant cavities.

Advanced Antenna and Metasurface TechnologiesAntenna Design and AnalysisMetamaterials and Metasurfaces ApplicationsConductorGround planePlanarMaterials scienceMicrostrip antennaDielectricMicrostripOpticsBandwidth (computing)Patch antenna
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References
Enhanced patch-antenna performance by suppressing surface waves using photonic-bandgap substrates
IEEE Transactions on Microwave Theory and Techniques · 1999 · 482 citations
Design of millimeter wave microstrip reflectarrays
IEEE Transactions on Antennas and Propagation · 1997 · 1,184 citations
High-impedance electromagnetic surfaces with a forbidden frequency band
IEEE Transactions on Microwave Theory and Techniques · 1999 · 4,179 citations
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