论文标题

墙非线性SAR成像

Through-the-Wall Nonlinear SAR Imaging

论文作者

Klibanov, Michael V., Smirnov, Alexey V., Khoa, Vo Anh, Sullivan, Anders J., Nguyen, Lam H.

论文摘要

在应用到壁壁成像中的SAR数据的一个反散射问题。与SAR成像的常规算法相反,该算法与基于天生近似的线性数学模型一起工作,此处考虑了完全非线性的情况。为了避免局部最小问题,将所谓的“凸化”全球收敛反演方案应用于近似于3-D域中倾斜范围(SR)介电常数的分布。本文的基准场景包括均匀的介电墙,并隐藏在其后面的不同介电目标。结果包括感兴趣现场的SR介电常数的二维图像。数值结果是通过提出的反转方法获得的,用于计算模拟和实验数据。我们的结果表明,隐藏在墙后后面的目标的SR介电常数的值,跨范围的大小和位置接近实际目标的靶标。与常规SAR成像中通常使用的线性逆散射问题解决方案的数值比较显示出我们结果的准确性明显更好。

An inverse scattering problem for SAR data in application to through-the-wall imaging is addressed. In contrast with the conventional algorithms of SAR imaging, that work with the linearized mathematical model based on the Born approximation, the fully nonlinear case is considered here. To avoid the local minima problem, the so-called "convexification" globally convergent inversion scheme is applied to approximate the distribution of the slant range (SR) dielectric constant in the 3-D domain. The benchmark scene of this paper comprises a homogeneous dielectric wall and different dielectric targets hidden behind it. The results comprise two dimensional images of the SR dielectric constant of the scene of interest. Numerical results are obtained by the proposed inversion method for both the computationally simulated and experimental data. Our results show that the values, cross-range sizes and locations of SR dielectric constants for targets hidden behind the wall are close to those of real targets. Numerical comparison with the solution of the linearized inverse scattering problem provided by the Born approximation, commonly used in conventional SAR imaging, shows a significantly better accuracy of our results.

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