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Microwave Imaging in Layered Media: 3-D Image Reconstruction From Experimental Data

机译:分层介质中的微波成像:根据实验数据重建3D图像

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A prototype microwave imaging system for imaging 3-D targets in layered media is developed to validate the capability of microwave imaging with experimental data and with 3-D nonlinear inverse scattering algorithms. In this experimental prototype, the transmitting and receiving antennas are placed in a rectangular tub containing a fluid. Two plastic slabs are placed in parallel in the fluid to form a five-layer medium. The microwave scattering data are acquired by mechanically scanning a single transmitting antenna and a single receiving antenna, thus avoiding the mutual coupling that occurs when an array is used. The collected 3-D experimental data in the fluid are processed by full 3-D nonlinear inverse scattering algorithms to unravel the complicated multiple scattering effects and produce 3-D digital images of the dielectric constant and conductivity of the imaging domain. The image reconstruction is focused on the position and dimensions of the unknown scatterers. Different dielectric and metallic objects have been imaged effectively at 1.64 GHz.
机译:开发了用于在分层介质中对3-D目标成像的微波成像原型系统,以利用实验数据和3-D非线性逆散射算法验证微波成像的能力。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。将两个塑料板平行放置在流体中以形成五层介质。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。流体中收集的3-D实验数据通过完整的3-D非线性逆散射算法进行处理,以阐明复杂的多重散射效应,并生成成像域的介电常数和电导率的3-D数字图像。图像重建的重点是未知散射体的位置和尺寸。不同的介电和金属物体已在1.64 GHz处有效成像。

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