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Novel Microwave Tomography System Using a Phased-Array Antenna

机译:使用相控阵天线的新型微波层析成像系统

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In this paper, a novel microwave tomography (MWT) system that utilizes a phased-array transmitter antenna is presented. In contrast to contemporary MWT systems, the system presented herein consists of a single transmitter and multiple receivers. The single transmitter is a four-element array antenna; by varying the phase for each element in the array, the field distribution inside the imaging chamber varies, which produces a different set of measurements per phase configuration. Furthermore, the individual elements of the transmitting array antenna and the receiving antennas are of different types; the receiving antenna type is selected to maximize the coupling between the transmitter and the receiver. Due to the system's complexity, the system is modeled using a neural network; the trained network is used as the forward solver for an inversion algorithm based on a Bayesian regularized Levenberg-Marquardt algorithm. The system along with the inversion algorithm is tested using several targets. Furthermore, the performance of the algorithm against various levels of experimental noise is analyzed and evaluated.
机译:本文提出了一种利用相控阵发射机天线的新型微波层析成像(MWT)系统。与当代的MWT系统相反,本文介绍的系统由单个发射机和多个接收机组成。单个发射器是四元件阵列天线。通过改变阵列中每个元素的相位,成像室内部的场分布会发生变化,从而对每个相位配置产生一组不同的测量值。此外,发射阵列天线和接收天线的各个元件是不同类型的;例如,选择接收天线类型以最大程度地提高发射器和接收器之间的耦合。由于系统的复杂性,使用神经网络对系统进行建模。训练后的网络用作基于贝叶斯正则化Levenberg-Marquardt算法的反演算法的正解器。使用几个目标对系统和反演算法进行了测试。此外,分析和评估了针对各种实验噪声水平的算法性能。

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