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Percolation-Based Approaches For Ray-Optical Propagation in Inhomogeneous Random Distribution of Discrete Scatterers

机译:离散散射体非均匀随机分布中基于光轴传播的射线传播方法

摘要

We address the problem of optical ray propagation in an inhomogeneous half�]plane lattice, where each cell can be occupied according to a known one�]dimensional obstacles density distribution. A monochromatic plane wave impinges on the random grid with a known angle and undergoes specular reflections on the occupied cells. We present two different approaches for evaluating the propagation depth inside the lattice. The former is based on the theory of the Martingale random processes, while in the latter ray propagation is modelled in terms of a Markov chain. A numerical validation assesses the proposed solutions, while validation through experimental data shows that the percolation model, in spite of its simplicity, can be applied to model real propagation problems.
机译:我们解决了光线在不均匀的半平面格子中传播的问题,每个格子都可以根据已知的一维障碍物密度分布来占据。单色平面波以已知角度撞击随机网格,并在占用的单元格上发生镜面反射。我们提出了两种不同的方法来评估晶格内部的传播深度。前者基于the随机过程的理论,而后者则根据马尔可夫链对光线传播进行建模。数值验证评估了所提出的解决方案,而通过实验数据进行的验证表明,尽管渗流模型很简单,但仍可用于对实际传播问题进行建模。

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