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Two-dimensional FDTD inverse-scattering scheme for determination of near-surface material properties at microwave frequencies

机译:二维FDTD逆散射方案,用于确定微波频率下的近地表材料特性

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This paper reports a two-dimensional time-domain inverse-scattering algorithm based upon the finite-difference time-domain method for determining near-surface material properties at microwave frequencies. The time-domain nature of this technique allows for limiting the region of inversion using causality. The algorithm traces a search trajectory in the (εr, σ) parameter space. The minimal parameter estimation error along this trajectory yields a set of approximate parameter values. It is shown that the algorithm's convergence and robustness with respect to broadband Gaussian noise depends on the shape and the duration of the illuminating electromagnetic wave pulse chosen for the electrical parameter reconstruction. It is possible to achieve an unambiguous indication of algorithm convergence despite the noisy background.
机译:本文报道了一种基于时域有限差分法的二维时域逆散射算法,用于确定微波频率下的近地表材料特性。该技术的时域性质允许使用因果关系来限制反转区域。该算法在(εr,σ)参数空间中跟踪搜索轨迹。沿着该轨迹的最小参数估计误差产生一组近似参数值。结果表明,该算法对宽带高斯噪声的收敛性和鲁棒性取决于为电参数重构所选择的照明电磁波脉冲的形状和持续时间。尽管有嘈杂的背景,仍然可以实现算法收敛的明确指示。

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