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A Wideband Microwave Tomography System With a Novel Frequency Selection Procedure

机译:一种具有新颖选频程序的宽带微波层析成像系统

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摘要

In this paper, we describe a 2-D wideband microwave imaging system intended for biomedical imaging. The system is capable of collecting data from 3 to 6 GHz, with 24 coresident antenna elements connected to a vector network analyzer via a 2 × 24 port matrix switch. As one of the major sources of error in the data collection process is a result of the strongly coupling 24 coresident antennas, we provide a novel method to avoid the frequencies where the coupling is large enough to prevent successful imaging. Through the use of two different nonlinear reconstruction schemes, which are an enhanced version of the distorted born iterative method and the multiplicative regularized contrast source inversion method, we show imaging results from dielectric phantoms in free space. The early inversion results show that with the frequency selection procedure applied, the system is capable of quantitatively reconstructing dielectric objects, and show that the use of the wideband data improves the inversion results over single-frequency data.
机译:在本文中,我们描述了用于生物医学成像的二维宽带微波成像系统。该系统能够通过2×24端口矩阵交换机将24个共存天线元件连接到矢量网络分析仪,从而收集3至6 GHz的数据。由于数据收集过程中的主要错误源之一是24个共存天线的强耦合导致的,所以我们提供了一种新颖的方法来避免耦合足够大以防止成功成像的频率。通过使用两种不同的非线性重建方案,它们是扭曲的固有迭代方法和乘法正则对比源反演方法的增强版,我们显示了自由空间中介电体模的成像结果。早期反演结果表明,通过应用频率选择程序,该系统能够定量地重构介电对象,并且表明,与单频数据相比,使用宽带数据可以提高反演结果。

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