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High-resolution imaging of dielectric profiles by using a time-domain ultra wideband radar sensor

机译:使用时域超宽带雷达传感器对电介质剖面进行高分辨率成像

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摘要

This paper describes the development of an imaging instrument that capitalizes on high-resolution phenomenon in inverse scattering using a time-domain ultra wideband (UWB) sensor. The image reconstruction algorithm that accounts for the band-limited view of the UWB data is based upon the TM-mode wave equation, the Born approximation, and the adjoint method for computing the Frechet derivatives. The computation of the sensitivity function requires the forward propagation of the UWB wavefield, as well as the reverse propagation of the residual wavefield. The electromagnetic and adjoint fields are calculated using the finite-difference time-domain (FDTD) method, implementing the first and second orders Mur's absorbing boundaries. The overall performance of the instrumentation system is demonstrated using computer simulations and experimental measurements. Results indicate that the equipment can reconstruct fairly complicated dielectric profiles at near millimeter resolution even with the presence of large amount of noise.
机译:本文介绍了一种利用时域超宽带(UWB)传感器利用逆散射中的高分辨率现象的成像仪器的开发。考虑到UWB数据的带限视图的图像重建算法基于TM模式波方程,Born近似和用于计算Frechet导数的伴随方法。灵敏度函数的计算需要UWB波场的正向传播以及剩余波场的反向传播。使用有限差分时域(FDTD)方法计算电磁场和伴随场,实现第一阶和第二阶Mur的吸收边界。仪器系统的整体性能通过计算机仿真和实验测量得到证明。结果表明,即使存在大量噪声,该设备也可以以接近毫米的分辨率重建相当复杂的介电轮廓。

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