DocumentCode
2505313
Title
Analysis of rectangular dielectric resonator antennas excited through a slot over a finite ground plane
Author
Shin, J. ; Kishk, A.A. ; Glisson, A.W.
Author_Institution
Dept. of Electr. Eng., Mississippi Univ., MS, USA
Volume
4
fYear
2000
fDate
16-21 July 2000
Firstpage
2076
Abstract
The dielectric resonator antenna (DRA) radiating element has been the subject of considerable interest due to its small size and high efficiency. The rigorous analysis of DRA elements, however, has been largely restricted to rotationally symmetric shapes. Various numerical techniques have been used in the analysis of the DRA. The surface integral equation with the method of moments (SIE/MoM) has been used to analyze a rotationally symmetric DRA. The finite difference time domain (FDTD) method has been used to analyze a rectangular DRA and cylindrical DRA with a staircased cell approximation. Here the rectangular DRA is considered over a finite ground plane with a microstrip slot excitation. The SIE/MoM is used with the RWG triangle basis function expansion. Using the triangle basis functions allows the modeling of arbitrarily shaped objects. Also, the FDTD method is used to analyze the same problem for the purpose of verifying both methods. The effect of the ground plane size and the dielectric substrate truncation is studied.
Keywords
antenna feeds; antenna radiation patterns; dielectric resonators; finite difference time-domain analysis; integral equations; method of moments; microstrip lines; slot antennas; DRA elements; FDTD method; RWG triangle basis function expansion; SIE/MoM; antenna radiating element; cylindrical DRA; dielectric substrate truncation; far-field radiation patterns; finite difference time domain; finite ground plane; ground plane size; method of moments; microstrip slot excitation; rectangular DRA; rectangular dielectric resonator antennas; rotationally symmetric DRA; slot excited antenna; surface integral equation; Dielectric resonator antennas; Dielectric substrates; Finite difference methods; Microstrip; Moment methods; Shape; Slot antennas; Time domain analysis; Transmission line theory; Voltage;
fLanguage
English
Publisher
ieee
Conference_Titel
Antennas and Propagation Society International Symposium, 2000. IEEE
Conference_Location
Salt Lake City, UT, USA
Print_ISBN
0-7803-6369-8
Type
conf
DOI
10.1109/APS.2000.874902
Filename
874902
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