DocumentCode
2157876
Title
Ka -Band dielectric lens antenna for resolution enhancement of a GPR
Author
Panzner, Berthold ; Joestingmeier, Andreas ; Omar, Abbas
Author_Institution
Dept. of Microwave & Commun. Eng., Otto-von-Guericke Univ., Magdeburg
fYear
2008
fDate
2-5 Nov. 2008
Firstpage
31
Lastpage
34
Abstract
This paper focuses on the analysis and design of a dielectric lens antenna and its application for ground penetrating radar (GPR) at millimeter waves. The work investigates the influence of different design parameters on the resolution performance of GPR using a dielectric lens for focusing. The performance of the optical focusing of the dielectric lens is compared to a synthetic-aperture-Radar (SAR) algorithm. Our purpose is to optimize the spatial resolution of a Ka-Band (26-40 GHz) GPR. A dielectric lens is designed to minimize the footprint of the antenna. The lens focuses the radiated energy from the feeding point to a small spot onto the soil surface. A commercial time-domain solver based on finite-integration-technique (FIT) is used to simulate the electromagnetic characteristics of the lens antenna model. A lens prototype is fabricated and tested at our GPR test site. The investigation of the microwave images for special targets shows that both focusing methods, namely the proposed lens antenna and SAR algorithm, improve the image resolution. However the experimental results reveal that SAR applied to the unfocussed data outperforms the dielectric lens.
Keywords
dielectric devices; ground penetrating radar; image enhancement; image resolution; lens antennas; microwave imaging; millimetre wave antennas; radar imaging; radar resolution; synthetic aperture radar; GPR resolution enhancement; Ka-band dielectric lens antenna; SAR; electromagnetic characteristics; finite-integration-technique; ground penetrating radar; image quality enhancement; microwave image resolution; millimeter wave; spatial resolution; synthetic-aperture-radar; time-domain solver; Dielectrics; Focusing; Ground penetrating radar; Lenses; Millimeter wave radar; Millimeter wave technology; Optical design; Radar antennas; Spatial resolution; Testing;
fLanguage
English
Publisher
ieee
Conference_Titel
Antennas, Propagation and EM Theory, 2008. ISAPE 2008. 8th International Symposium on
Conference_Location
Kunming
Print_ISBN
978-1-4244-2192-3
Electronic_ISBN
978-1-4244-2193-0
Type
conf
DOI
10.1109/ISAPE.2008.4735132
Filename
4735132
Link To Document