A Stochastic Ray-Tracing Approach for Maritime Line-of-Sight Channel Modeling

Rui Ding, Jue Wang, Ye Li, Li You, Qiang Sun
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引用次数: 1

Abstract

In this paper, we propose a modeling approach for maritime wireless channels based on a stochastic ray-tracing approach. Taking into consideration the line-of-sight (LOS) path, the specular reflection path, and the diffuse reflection paths from the sea surface, the maritime wireless fading channel is modeled by combining all the propagation paths arrived at the receiver point. In contrast to the conventional ray-tracing approaches where the propagation environments (and hence, the rays) are considered to be fixed, our stochastic ray-tracing approach assumes varying propagation environment caused by practical factors such as the sea wave. In this case, the locations of the reflection and receiver points randomly vary following a stochastic process. Based on the proposed channel model, we further investigate the deep fading effect in maritime wireless propagations caused by destructive combination of sparse rays. We show by simulations that the role of sea wave has two sides. Specifically, the sea wave is beneficial to compensate the deep fading in the areas where the LOS path and the specular reflection path have been destructively combined, while on the other hand it might induce more outage in the areas where deep fading has not occurred.
海上视距航道建模的随机光线追踪方法
在本文中,我们提出了一种基于随机射线追踪方法的海上无线信道建模方法。考虑海面的视距路径、镜面反射路径和漫反射路径,将到达接收点的所有传播路径组合在一起,建立了海上无线衰落信道模型。在传统的光线追踪方法中,传播环境(因此,光线)被认为是固定的,与之相反,我们的随机光线追踪方法假设由实际因素(如海浪)引起的传播环境变化。在这种情况下,反射点和接收点的位置随随机过程随机变化。基于所提出的信道模型,我们进一步研究了稀疏射线破坏性组合在海上无线传播中的深度衰落效应。模拟结果表明,海浪的作用具有两面性。具体来说,在LOS路径和镜面反射路径破坏性结合的区域,海浪有利于补偿深度衰落,而在深度衰落未发生的区域,海浪则可能导致更多的中断。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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