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Spatial Domain Generation of Random Surface Using Savitzky-Golay Filter for Simulation of Electromagnetic Polarimetric Systems

机译:利用Savitzky-Golay滤波器模拟电磁极化系统的随机表面空间域

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摘要

A spatial-domain algorithm is introduced for generating both isotropic and anisotropic natural rough surface models with predetermined statistical properties using Savitzky-Golay filter. Unlike the spectral-domain methods, the proposed method does not require the calculation of two-dimensional inverse Fourier transforms which constitute a computational burden for generating large ensembles of high-resolution surfaces. A comparative analysis between the proposed spatial-domain method and one of the conventional spectral-domain methods is presented. The comparison shows that the proposed spatial-domain method results in substantially improved computational performance. The fitness of the generated rough surface to the predetermined statistical properties is verified by calculating a variogram for numerical measurement of the variance and the correlation lengths. To demonstrate the importance of generating such a rough surface for simulation of electromagnetic polarimetric systems, a rough surface with anisotropic statistical properties is placed in the near field region of two antennas of orthogonal polarizations. It is shown that the self and mutual electromagnetic coupling coefficients of the two antennas can be used for measuring the orientation of the rough surface.
机译:引入了一种空间域算法,可使用Savitzky-Golay滤波器生成具有预定统计特性的各向同性和各向异性自然粗糙表面模型。与光谱域方法不同,所提出的方法不需要计算二维傅立叶逆变换,该傅立叶逆变换构成了用于生成高分辨率表面的大集合的计算负担。提出的空间域方法和一种常规的频谱域方法之间的比较分析。比较表明,所提出的空间域方法可以显着提高计算性能。通过计算用于方差和相关长度的数值测量的方差图,可以验证生成的粗糙表面对预定统计特性的适合性。为了证明生成这种粗糙表面以模拟电磁极化系统的重要性,将具有各向异性统计特性的粗糙表面放置在两个正交极化天线的近场区域中。结果表明,两个天线的自耦合和互电磁耦合系数可用于测量粗糙表面的方向。

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