Title :
Analysis of a dielectric resonator antenna in a cylindrical conducting cavity: HEM modes
Author :
Di, X. ; Glisson, A.W. ; Michalski, K.A.
Author_Institution :
Nat. Center for Phys. Acoust., Mississippi Univ., MS, USA
fDate :
2/1/1994 12:00:00 AM
Abstract :
Numerical modelling has been performed for the hybrid HEM modes of a flush-mounted dielectric resonator antenna in a cylindrical conducting cavity. The antenna is formed by a conducting cavity with a dielectric post and radiates through an annular slot in the upper ground plane. Coupled aperture magnetic current integral equations are used to model the slot and the effect of the post resonator and the cavity are included via Green´s function techniques. The moment method is applied to the coupled integral equations and the complex resonant frequencies for the antenna structure are found by searching for the zeros of the determinant of the impedance matrix in the complex frequency plane. The radiation Q factor, slot field distribution and radiation field are subsequently computed at the resonant frequency. The HEM modes with the lowest resonant frequencies have been investigated for different geometrical configurations
Keywords :
Q-factor; antenna theory; cavity resonators; dielectric resonators; integral equations; numerical analysis; poles and zeros; slot antennas; Green´s function techniques; HEM modes; annular slot; complex frequency plane; complex resonant frequencies; coupled aperture magnetic current integral equations; cylindrical conducting cavity; dielectric post; dielectric resonator antenna; flush-mounted antenna; impedance matrix; moment method; numerical modelling; radiation Q factor; radiation field; slot field distribution; upper ground plane; zeros;
Journal_Title :
Microwaves, Antennas and Propagation, IEE Proceedings
DOI :
10.1049/ip-map:19949773