Title :
Volumetric MSRR-based AMC for low-profile antenna application
Author :
Ayad, H. ; Khalil, A. ; Fadlallah, M. ; Ndagijimana, F. ; Jomaah, J.
Author_Institution :
IMEP-LHAC, Grenoble INP, Grenoble, France
Abstract :
This paper is dedicated to the study of volumetric MSRR-based AMC structure. The characteristics of a single MSRR unit cell are investigated; and a volumetric miniaturized AMC block is then designed. In order to validate the approach used to simulate an infinite periodic structure, a block of nine aligned layers is then simulated. The next step is to add a printed dipole antenna as an application to validate the performance of the AMC block. The results are very excellent and promising if compared with the simple dipole antenna as an enhancement of 5 dB is achieved considering the directivity. The front to back ratio is found to be about 20 dB.
Keywords :
conductors (electric); dipole antennas; microstrip antennas; resonators; artificial magnetic conductor; infinite periodic structure; low-profile antenna; multisplit ring resonator; printed dipole antenna; simple dipole antenna; single MSRR unit cell; volumetric MSRR-based AMC structure; volumetric miniaturized AMC block; Conductors; Dipole antennas; Magnetic materials; Metamaterials; Periodic structures; Reflection; Artificial Magnetic Conductor (AMC); Multi Split Ring Resonator (MSRR); Printed Dipole Antenna; Volumetric Metamaterials;
Conference_Titel :
Microwave Symposium (MMS), 2013 13th Mediterranean
Conference_Location :
Saida
DOI :
10.1109/MMS.2013.6663092