DocumentCode
3383636
Title
Efficient analysis of a U-slot patch antenna using contour integral method with complex images
Author
Omar, A.A.
Author_Institution
Dept. of Electr. Eng., United Arab Emirates Univ., Al-Ain, United Arab Emirates
Volume
3
fYear
1998
fDate
21-26 June 1998
Firstpage
1602
Abstract
This paper attempts to analyze a general shaped patch antenna excited using either a probe feed or microstrip feed. The technique used is a combination of the 2-D contour integral method and the 3-D complex image method. This technique has been successfully applied for microstrip fed patch antennas (without slot) of arbitrary shape (Omar et al. 1995). The method used is highly convergent because it performs only a 2-D discretization of the contour (peripheral) of the patch and not a 3-D discretization of the patch itself. It is also accurate because it includes the effect of the fringe field at the edges of the patch through the 3-D complex images. The method is also versatile in the sense that it can solve arbitrarily shaped patch antennas with any slot shape. The contour integral method with complex images in Omar et al. is extended here to include the effect of a U-slot etched on the surface of the patch. The performance of the antenna with different patch shapes, slot sizes, locations and orientations is investigated.
Keywords
antenna feeds; antenna theory; integral equations; microstrip antennas; slot antennas; 2-D contour integral method; 2-D discretization; 3-D complex image method; U-slot patch antenna; arbitrarily shaped patch antennas; complex images; contour integral method; convergent method; fringe field; general shaped patch antenna; location; microstrip feed; orientation; performance; probe feed; slot shape; slot sizes; Bandwidth; Etching; Feeds; Finite difference methods; Image analysis; Microstrip antennas; Patch antennas; Probes; Shape; Transmission line matrix methods;
fLanguage
English
Publisher
ieee
Conference_Titel
Antennas and Propagation Society International Symposium, 1998. IEEE
Conference_Location
Atlanta, GA, USA
Print_ISBN
0-7803-4478-2
Type
conf
DOI
10.1109/APS.1998.690859
Filename
690859
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