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An imaging algorithm of objects embedded in a lossy-dispersive medium for subsurface radar-data processing

机译:嵌入有损色散介质中的物体成像算法,用于地下雷达数据处理

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摘要

A robust and high-resolution two-dimensional (2D) imaging algorithm is proposed for retrieving the shape of conductive objects embedded in a uniform lossy and dispersive medium. The target is modeled in terms of the location of points that represents the enter contour of the object, together with the parameters of the medium. A nonlinear least-squares fitting is applied to the estimated scattered waveform to adjust the model parameters. The estimated waveform is computed using the extended ray-tracing method, which incorporates the edge-diffraction waves. The performance of the algorithm is examined with numerical simulations and test-site experiments. The simulation with clutters also revealed the robustness of the algorithm even under fairly strong clutter environments.
机译:提出了一种鲁棒的高分辨率二维(2D)成像算法,用于检索嵌入在均匀有损和分散介质中的导电物体的形状。根据代表对象进入轮廓的点的位置以及介质的参数对目标进行建模。将非线性最小二乘拟合应用于估计的散射波形以调整模型参数。使用扩展的射线跟踪方法计算估计的波形,该方法结合了边缘衍射波。通过数值模拟和测试现场实验来检验算法的性能。即使在相当强的杂波环境下,杂波模拟也显示了算法的鲁棒性。

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