This communication presents a method to enhance the radiation performance of conventional electromagnetic band gap resonator antennas (ERAs) by improving their aperture phase distributions. A lowprofile printed planar phase correcting surface (PCS) was designed and fabricated to demonstrate performance enhancement. Measurements of a prototype demonstrated that the PCS significantly enhances the directive radiation properties of ERAs. This includes an 8 dB increase in peak directivity, 60% reduction in 3 dB beamwidth (from 35° to 14°), and a considerable reduction in side lobe levels
Planar Circularly Symmetric (PCS) Electromagnetic Band-Gap (EBG) substrates have been recently propo...
Planar circularly symmetric (PCS) electromagnetic band-gap (EBG) substrates have recently been propo...
This paper presents recent advances related to electromagnetic band gap (EBG) resonator antennas (ER...
This communication presents a method to enhance the radiation performance of conventional electromag...
Phase correction in the aperture field of electromagnetic band gap resonator antennas (ERAs) is disc...
This paper presents a planar and a low profile phase correcting structure (PCS) for electromagnetic ...
A novel technique to design a phase-correcting structure (PCS) for an electromagnetic band gap (EBG)...
Phase correction has been used to demonstrate increase in directivity of conventional electromagneti...
This paper presents low-profile continuous phase correcting structures (PCS) for conventional electr...
Classical electromagnetic band gap resonator antennas (ERA) have non-uniform aperture-phase distribu...
Amplitude and phase distributions are investigated across apertures of two typical electromagnetic b...
A novel technique for the performance enhancement of Fabry-Perot resonator antennas (FPRAs) is inves...
Recent research on the phase correction of classical electromagnetic bandgap resonator antennas (ERA...
This paper presents an effective technique for radiation patterns improvement of a Febry-Perot cavit...
Planar Circularly Symmetric (PCS) Electromagnetic Band-Gap (EBG) substrates have been recently propo...
Planar Circularly Symmetric (PCS) Electromagnetic Band-Gap (EBG) substrates have been recently propo...
Planar circularly symmetric (PCS) electromagnetic band-gap (EBG) substrates have recently been propo...
This paper presents recent advances related to electromagnetic band gap (EBG) resonator antennas (ER...
This communication presents a method to enhance the radiation performance of conventional electromag...
Phase correction in the aperture field of electromagnetic band gap resonator antennas (ERAs) is disc...
This paper presents a planar and a low profile phase correcting structure (PCS) for electromagnetic ...
A novel technique to design a phase-correcting structure (PCS) for an electromagnetic band gap (EBG)...
Phase correction has been used to demonstrate increase in directivity of conventional electromagneti...
This paper presents low-profile continuous phase correcting structures (PCS) for conventional electr...
Classical electromagnetic band gap resonator antennas (ERA) have non-uniform aperture-phase distribu...
Amplitude and phase distributions are investigated across apertures of two typical electromagnetic b...
A novel technique for the performance enhancement of Fabry-Perot resonator antennas (FPRAs) is inves...
Recent research on the phase correction of classical electromagnetic bandgap resonator antennas (ERA...
This paper presents an effective technique for radiation patterns improvement of a Febry-Perot cavit...
Planar Circularly Symmetric (PCS) Electromagnetic Band-Gap (EBG) substrates have been recently propo...
Planar Circularly Symmetric (PCS) Electromagnetic Band-Gap (EBG) substrates have been recently propo...
Planar circularly symmetric (PCS) electromagnetic band-gap (EBG) substrates have recently been propo...
This paper presents recent advances related to electromagnetic band gap (EBG) resonator antennas (ER...