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Hemisphere lens-loaded Vivaldi antenna for time domain microwave imaging of concealed objects

机译:装有半球透镜的维瓦尔第天线用于隐蔽物体的时域微波成像

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摘要

The hemisphere lens-loaded Vivaldi antenna for the microwave imaging applications is designed and tested in this paper. The proposed antenna is designed to work in the wide frequency band of 1-14GHz, and is fabricated on the FR-4 substrate. The directivity of the proposed Vivaldi antenna is enhanced using a hemispherical shape dielectric lens, which is fixed on the end-fire direction of the antenna. The proposed antenna is well suited for the microwave imaging applications because of the wide frequency range and high directivity. The design of the antenna is carried out using the CST microwave studio, and various parameters such as the return loss, the radiation pattern, the directivity, and input impedance are optimized. The maximum improvement of 4.19dB in the directivity is observed with the designed hemisphere lens. The antenna design is validated by fabricating and testing it in an anechoic environment. Finally, the designed antenna is utilized to establish a setup for measuring the scattering coefficients of various objects and structures in the frequency band of 1-14GHz. The two-dimensional (2D) microwave images of these objects are successfully obtained in terms of the measured wide band scattering data using a novel time domain inverse scattering approach, which shows the applicability of the proposed antenna.
机译:本文设计并测试了用于微波成像应用的装有半球透镜的维瓦尔第天线。拟议中的天线设计用于1-14GHz的宽频带,并在FR-4基板上制造。拟议的维瓦尔第天线的方向性使用半球形介质透镜增强,该透镜固定在天线的端射方向上。所提出的天线由于其宽频率范围和高方向性而非常适合于微波成像应用。天线的设计是使用CST微波工作室进行的,并且对各种参数(例如回波损耗,辐射方向图,方向性和输入阻抗)进行了优化。使用设计的半球透镜可观察到方向性最大改善4.19dB。通过在无声环境中进行制造和测试来验证天线设计。最后,利用设计好的天线建立用于测量1-14GHz频带内各种物体和结构的散射系数的设置。使用新颖的时域逆散射方法,根据测量的宽带散射数据成功获得了这些物体的二维(2D)微波图像,这表明了所提出天线的适用性。

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