Title :
Novel Polarization Rotation Technique Based on an Artificial Magnetic Conductor and Its Application in a Low-Profile Circular Polarization Antenna
Author :
Wanchen Yang ; Kam-Weng Tam ; Wai-Wa Choi ; Wenquan Che ; Hon Tat Hui
Author_Institution :
Dept. of Commun. Eng., Nanjing Univ. of Sci. & Technol., Nanjing, China
Abstract :
A novel polarization rotation technique based on an artificial magnetic conductor (AMC) structure is proposed. A new polarization rotating reflective surface (PRRS) is designed using a newly proposed AMC as the unit cell. The height of the so-constructed PRRS is only 0.04 λ0. Our theoretical analysis shows that the polarization rotation property of the new PRRS is due to an impedance imbalance which can be analyzed using an equivalent circuit model. In addition, two polarization rotation bands and a large polarization rotation bandwidth of 29.1% can be achieved by using the new PRRS. Moreover, the new PRRS is applied for the first time to design a low-profile dipole antenna for the generation of circular polarization radiation. Three polarization states are readily achieved. Both simulation and measurement results demonstrate good right-handed circular polarization with a broad axial ratio bandwidth and a large axial ratio beamwidth in both the xoz and yoz planes.
Keywords :
dipole antennas; electromagnetic wave polarisation; equivalent circuits; artificial magnetic conductor; broad axial ratio bandwidth; circular polarization radiation generation; equivalent circuit model; large axial ratio beamwidth; low-profile circular polarization antenna; low-profile dipole antenna; polarization rotating reflective surface; polarization rotation technique; right-handed circular polarization; Electric fields; Equivalent circuits; Impedance; Polarization; Reflection coefficient; Resonant frequency; Surface impedance; Artificial magnetic conductor (AMC); axial ratio; circular polarization; polarization rotation; surface impedance;
Journal_Title :
Antennas and Propagation, IEEE Transactions on
DOI :
10.1109/TAP.2014.2361130