Novel Broadband Dielectric Resonator Antennas Fed Through Double-Bowtie-Slot Excitation Scheme
关键词:
Novel Broadband Dielectric Resonator Antennas Fed Through Double-Bowtie-Slot Excitation Scheme摘要
This paper discusses the concept and the realization of novel wideband dielectric resonator antennas (DRAs), in which a dielectric cylinder or parallelepiped are fed from a microstrip line through two parallel bowtie-slots. The concept of partial independence of the slot modes from the dielectric resonator mode is exploited in such a way that the resonances of the slot modes and of the DRA are designed to occur at different frequencies. As a result, the bandwidth of the DRA is significantly improved, while stability in the radiation patterns and low cross-polarization are maintained. Finally, a study is performed concerning the influence of the gap between the dielectric resonator and the ground plane upon the overall performance of the DRA. Comparison of the results from a commercial software tool (HFSS®) and from the Finite-Volume Time-Domain (FVTD) method is made.
##plugins.generic.usageStats.downloads##
参考
S. A. Long, M. W. McAllister, and L. C. Shen, “The
resonant cylindrical dielectric cavity antenna,” IEEE
Trans. Antennas Propagation, Vol. 31, No. 3, pp.
- 412, May 1983.
A. Petosa, A. Ittipiboon, Y. M. M. Antar, D. Roscoe ,
and M. Cuhaci, “Recent advances in dielectricresonator antenna technology,” IEEE Antennas and
Propagation Magazine, Vol. 40, No. 3, pp. 35 – 48,
June 1998.
A. A. Kishk, B. Ahn and D. Kajfez, “Broadband
stacked dielectric resonator antennas,” Electronics
Letters, Vol. 25, No. 18, pp. 1232 - 1233, Aug. 1989.
K. W. Leung, K.Y Chow, K.M Luk, and E. K. N.
Yung, “Offset dual-disk dielectric resonator antenna
of very high permittivity,” Electronics Letters, Vol.
, No. 22, pp. 2038 – 2039, Oct. 1996.
A. Laisne, R. Gillard and G. Piton, “Circularly
polarized dielectric resonator antenna with metallic
strip,” Electronics Letters, Vol. 38, No. 3, pp. 106 –
, Jan. 2002.
B. Li and K. W. Leung, “Strip-Fed Rectangular
Dielectric Resonator Antennas With/Without a
Parasitic Patch,” IEEE Trans. Antennas Propagation,
Vol. 53, No. 7, pp. 2200 – 2207, July 2005.
A. A. Kishk, Y. Yan, A. W. Glisson, “Conical
dielectric resonator antennas for wide-band
applications,” IEEE Trans. Antennas Propagation,
Vol. 50, No. 4, pp. 469 – 474, April 2002.
A. Ittipiboon, A. Petosa, D. Roscoe and M. Cuhaci,
“An Investigation of a Novel Broadband Dielectric
Resonator Antenna,” IEEE International Symposium
on Antennas and Propagation Digest, Baltimore,
MA, pp.2038-2041, June 1996.
A. Buerkle, K. Sarabandi and H. Mosallaei,
“Compact Slot and Dielectric Resonator Antenna
With Dual-Resonance, Broadband Characteristics,”
IEEE Trans. Antennas Propagation, Vol. 53, No. 3,
pp. 1020 – 1027, March 2005.
G. Almpanis, C. Fumeaux, and R. Vahldieck,
“Double-Bowtie-Slot-Coupled DRA for Enhanced
Bandwidth,” 22nd Annual Review of Progress in
Applied Computational Electromagnetics, ACES,
Miami, FL, USA, pp. 812-818, March 2006.
K. M. Luk and K. W. Leung, “Dielectric Resonator
Antennas”, Research Studies Press, Baldock,
England, 2003.
G.P. Junker, A.A. Kishk, A.W. Glisson and D.
Kaifez, “Effect of fabrication imperfections for
ground-plane-backed dielectric-resonator antennas,”
IEEE Trans. Antennas Propagation, Vol. 37, No. 1,
pp. 40-47, Feb. 1995.
C. Fumeaux, D. Baumann and R. Vahldieck,
“Advanced FVTD simulation of dielectric resonator
antennas and feed structures,” ACES Journal, Vol.
, No. 3, pp. 155-164, Nov. 2004.
V. Shankar, A.H. Mohammadian and W.F. Hall, “A
time-domain, finite-volume treatment for the
Maxwell equations,” Electromagnetics, Vol. 10, pp.
-145, 1990.
P. Bonnet, X. Ferrieres, B.L. Michielsen, P. Klotz
and J.L. Roumiguières, “Finite-Volume Time
Domain Method”, Chapter 9 in Time domain
electromagnetics, edited by S.M. Rao, Academic
Press, San Diego, 1999.
ALMPANIS, FUMEAUX, VAHLDIECK: BROADBAND DIELECTRIC RESONATOR ANTENNAS 103
D. Baumann, C. Fumeaux, G. Almpanis and R.
Vahldieck, “Microstrip port definition in FVTD and
application to slot-fed dielectric resonator antennas,”
nd Annual Review of Progress in Applied
Computational Electromagnetics, ACES, Miami, FL,
USA, pp. 787-794, March 2006.
C. Fumeaux, D. Baumann, P. Leuchtmann and R.
Vahldieck, “A generalized local time-step scheme for
efficient FVTD simulations in strongly
inhomogeneous meshes,” IEEE Trans. Microwave
Theory and Techniques, Vol. 52, No. 3, pp. 1067-
, March 2004.