Title :
Multiband Miniaturized Patch Antennas for a Compact, Shielded Microwave Breast Imaging Array
Author :
Aguilar, Suzette M. ; Al-Joumayly, Mudar A. ; Burfeindt, Matthew J. ; Behdad, Nader ; Hagness, Susan C.
Author_Institution :
Univ. of Wisconsin-Madison, Madison, WI, USA
Abstract :
We present a comprehensive study of a class of multiband miniaturized patch antennas designed for use in a 3-D enclosed sensor array for microwave breast imaging. Miniaturization and multiband operation are achieved by loading the antenna with nonradiating slots at strategic locations along the patch. This results in symmetric radiation patterns and similar radiation characteristics at all frequencies of operation. Prototypes were fabricated and tested in a biocompatible immersion medium. Excellent agreement was obtained between simulations and measurements. The tradeoff between miniaturization and radiation efficiency within this class of patch antennas is explored via a numerical analysis of the effects of the location and number of slots, as well as the thickness and permittivity of the dielectric substrate, on the resonant frequencies and gain. Additionally, we compare 3-D quantitative microwave breast imaging performance achieved with two different enclosed arrays of slot-loaded miniaturized patch antennas. Simulated array measurements were obtained for a 3-D anatomically realistic numerical breast phantom. The reconstructed breast images generated from miniaturized patch array data suggest that, for the realistic noise power levels assumed in this study, the variations in gain observed across this class of multiband patch antennas do not significantly impact the overall image quality. We conclude that these miniaturized antennas are promising candidates as compact array elements for shielded, multifrequency microwave breast imaging systems.
Keywords :
biological tissues; biomedical equipment; image denoising; image reconstruction; medical image processing; microstrip antenna arrays; microwave antenna arrays; microwave imaging; multifrequency antennas; numerical analysis; permittivity; phantoms; sensor arrays; 3D anatomically realistic numerical breast phantom; 3D enclosed sensor array; 3D quantitative microwave breast imaging; biocompatible immersion medium; compact array elements; compact shielded microwave breast imaging array; dielectric substrate permittivity; dielectric substrate thickness; enclosed arrays; image quality; miniaturization operation; miniaturized patch array data; multiband miniaturized patch antennas; multiband operation; multifrequency microwave breast imaging systems; nonradiating slots; numerical analysis; realistic noise power levels; reconstructed breast images; resonant frequencies; simulated array measurements; slot-loaded miniaturized patch antennas; strategic locations; symmetric radiation patterns; Antenna measurements; Arrays; Breast; Microwave antenna arrays; Microwave imaging; Patch antennas; Resonant frequency; Microstrip antennas; microwave breast imaging; miniaturized antennas; multiband antennas; slot-loading;
Journal_Title :
Antennas and Propagation, IEEE Transactions on
DOI :
10.1109/TAP.2013.2295615