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Active Microwave Imaging II: 3-D System Prototype and Image Reconstruction From Experimental Data

机译:有源微波成像II:3-D系统原型和来自实验数据的图像重建

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摘要

A 3-D microwave imaging system prototype and an inverse scattering algorithm are developed to demonstrate the feasibility of 3-D microwave imaging for medical applications such as breast cancer detection with measured data. In this experimental prototype, the transmitting and receiving antennas are placed in a rectangular tub containing a fluid. The microwave scattering data are acquired by mechanically scanning a single transmit antenna and a single receive antenna, thus avoiding the mutual coupling that occurs when an array is used. Careful design and construction of the system has yielded accurate measurements of scattered fields so that even the weak scattered signals at $S_{21}= -{hbox {90 dB}}$ (or 30 dB below the background fields) can be measured accurately. Measurements are performed in the frequency domain at several discrete frequencies. The collected 3-D experimental data in fluid are processed by a 3-D nonlinear inverse scattering algorithm to unravel the complicated multiple scattering effects and produce high-resolution 3-D digital images of the dielectric constant and conductivity of the imaging domain. Dielectric objects as small as 5 mm in size have been imaged effectively at 1.74 GHz.
机译:开发了3D微波成像系统原型和逆散射算法,以证明3D微波成像在医疗应用(如带有测量数据的乳腺癌检测)中的可行性。在这个实验原型中,发射和接收天线被放置在装有液体的矩形桶中。通过机械扫描单个发射天线和单个接收天线来获取微波散射数据,从而避免了在使用阵列时发生的相互耦合。精心的系统设计和构建可以精确测量散射场,因此即使在$ S_ {21} =-{hbox {90 dB}} $(或低于背景场30 dB)处的弱散射信号也可以精确测量。在几个离散频率的频域中执行测量。通过3-D非线性逆散射算法处理流体中收集的3-D实验数据,以解开复杂的多重散射效应,并生成成像域介电常数和电导率的高分辨率3-D数字图像。在1.74 GHz的频率下有效成像了小至5 mm的介电物体。

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