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Efficient and Accurate Algorithm for the Evaluation of Kirchhoff Scattering from Fractal Surfaces

机译:分形表面评价Kirchhoff散射的高效准确算法

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Scattering from a natural surface modeled by a fractional Brownian motion (fBm) two-dimensional process can be evaluated by using the Kirchhoff approximation if proper conditions are satisfied by surface parameters. This evaluation leads to a scattering integral that can be computed via two different asymptotic series expansions, whose behavior has been recently deeply investigated with the aim of finding suitable truncation criteria to compute, with a controlled absolute error, the field scattered by a fractal fBm surface. Based on those results, in this paper truncation criteria are used to compute aforementioned series with a controlled relative error instead of an absolute one. According to such an analysis, an algorithm is provided, which allows to automatically decide which of the two series, if any, can be used, and how it can be properly truncated for efficient and effective computation of the field scattered by natural surfaces. It turns out that by using the standard IEEE double-precision numbering format, a relative accuracy as high as 10~(-5) can be achieved for most of allowable values of surface parameters. Finally, to illustrate its practical applicability, the proposed algorithm is employed to generate a Synthetic Aperture Radar (SAR) reflectivity map to be used within a SAR simulation scheme.
机译:如果通过表面参数满足适当的条件,可以通过使用kirchhoff近似来评估由分数褐色运动(FBM)二维过程的自然表面散射。该评估导致散射积分,可以通过两种不同的渐近串联扩展来计算,其行为最近已经深入研究了将合适的截断标准进行计算,以控制的绝对误差,由分形FBM表面散射的字段散射。基于这些结果,在本文中,截断标准用于计算上述系列,其具有受控的相对误差而不是绝对的误差。根据这种分析,提供了一种算法,其允许自动确定可以使用两个序列中的哪一个,以及如何正确截断,以便截断自然表面散射的场的有效和有效计算。事实证明,通过使用标准的IEEE双精度编号格式,可以为大多数表面参数的允许值实现高达10〜(-5)的相对精度。最后,以示出它的实用性,所提出的算法来生成一个合成孔径雷达(SAR)的反射率映射进行一个模拟SAR方案内使用。

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