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An efficient 2-D MLFMM-UTD hybrid method to model non-line-of-sight propagation

机译:一种有效的二维mLFmm-UTD混合方法,用于模拟非视距传播

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摘要

We present a hybrid method that combines the Multilevel Fast Multipole Method (MLFMM) with the Uniform Theory of Diffraction (UTD) to model two-dimensional (2-D) scattering problems. The method is especially suited to model scattering in the presence of very large scatterers that obstruct the line-of-sight propagation between different devices with a more intricate geometry, such as antennas. The discretization of the large scatterers is avoided by using ray-based methods. An O(n) scaling is achieved for the computational time and required memory, n being the number of unknowns needed to discretize the antennas. The method is validated by a numerical example.
机译:我们提出了一种混合方法,该方法将多级快速多极方法(MLFMM)与均匀衍射理论(UTD)相结合,以建模二维(2-D)散射问题。该方法特别适用于在存在非常大的散射体的情况下对散射进行建模,这些散射体会阻碍具有更复杂几何形状的不同设备(例如天线)之间的视线传播。通过使用基于射线的方法,可以避免大型散射体的离散化。对于计算时间和所需的内存,可以实现O(n)缩放,n是离散化天线所需的未知数。通过数值例子验证了该方法。

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