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A Vector Parabolic Equation Method for Propagation Predictions Over 3-D Irregular Terrains

机译:用于3-D不规则地形上传播预测的矢量抛物线方程法

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In this paper, a vector parabolic equation (PE) method based on perfectly absorbing thin screen is applied to predicting the propagation of electromagnetic waves over three-dimensional (3-D) irregular terrains. Under the assumption of forward propagation, the 3-D PE is obtained and the split-step Fourier transform algorithm is adopted to march the potentials from one aperture plane to the next. Terrains are equivalent to a series of perfectly absorbing thin screens arranged along the direction of propagation and the Tukey window is used to attenuate the fields smoothly at the upper boundary without reflections. Finally, in order to validate the proposed method, several numerical simulations are made and the results are compared with the two-dimensional PE method. As a result, good agreements are observed and the proposed method was confirmed to take the effect of lateral terrains into account.
机译:本文将基于完美吸收薄屏的矢量抛物线方程(PE)方法用于预测电磁波在三维(3-D)不规则地形上的传播。在前向传播的假设下,获得了3-D PE,并采用了分步傅里叶变换算法将电势从一个孔径平面传播到另一个孔径平面。地形相当于沿着传播方向排列的一系列完美吸收的薄屏幕,Tukey窗口用于平滑地衰减上边界处的场而没有反射。最后,为了验证该方法的有效性,进行了数值模拟,并将结果与​​二维PE方法进行了比较。结果,观察到良好的一致性,并证实了所提出的方法考虑了横向地形的影响。

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