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Synthetic Bandwidth Radar for Ultra-Wideband Microwave Imaging Systems

机译:用于超宽带微波成像系统的合成带宽雷达

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摘要

A synthetic bandwidth radar as an approach to build ultra-wideband (UWB) imaging systems is presented. The method provides an effective solution to mitigate the challenges of UWB antenna's implementation with ideal performance. The proposed method is implemented by dividing the utilized UWB into several channels, or sub-bands, and designing an antenna array that includes a number of antennas equal to the number of channels. Each of those antennas is designed to have excellent properties across its corresponding channel. As part of the proposed approach, a two-stage calibration procedure is used to accurately estimate the effective permittivity of a heterogeneous imaged object at different angles and the phase center of each antenna for accurate delay time estimation. When imaging an object, each of the antennas transmits and captures signals only at its channel. Those captured signals are properly combined and processed to form an image of the target that is better than the current systems that use array of UWB antennas. The presented method is tested on breast imaging using the band 3-10 GHz via simulations and measurements on a realistic heterogeneous phantom.
机译:提出了一种合成带宽雷达作为构建超宽带(UWB)成像系统的一种方法。该方法提供了一种有效的解决方案,以理想的性能减轻了UWB天线实施的挑战。通过将所利用的UWB划分为若干个信道或子带,并设计一个天线阵列,其中包含的天线数量等于信道数量,可以实现所提出的方法。这些天线中的每一个被设计为在其相应的通道上具有出色的性能。作为提出的方法的一部分,使用两阶段校准程序来准确估计异类成像对象在不同角度的有效介电常数和每个天线的相位中心,以进行准确的延迟时间估计。在对物体成像时,每个天线仅在其信道上发射和捕获信号。那些捕获的信号经过适当组合和处理,以形成目标的图像,该图像比使用UWB天线阵列的当前系统更好。通过在真实的异质体模上进行仿真和测量,在3-10 GHz频段的乳房成像上测试了所提出的方法。

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