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On Channels with Composite Rough Surfaces at Terahertz Frequencies

机译:在太赫兹频率下具有复合粗糙表面的通道

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The paper preliminarily examines the influence of diffuse reflection by composite rough surfaces in ultra-broadband terahertz (THz) communication channels across 300 GHz (0.3 THz) to 310 GHz (0.31 THz) frequency spectrum. At terahertz frequencies, diffuse reflection tends to be higher due to the increased surface roughness and this surface roughness causes an additional attenuation even in a specular direction of reflection (by the amount that is scattered into non-specular directions). Two most famous modeling approaches, Rayleigh-Rice (R-R) and Beckmann-Kirchhoff (B-K) theories are employed to account for the surface scattering and compared by demonstrating the multipath channel transfer function (CTF) dynamics for line-of-sight (LoS) and non-line-of-sight (NLoS) conditions in a simple office environment. The R-R vector perturbation approach predicts diffuse reflection from optically smooth surfaces (σh/λ≪1), whilst classical B-K theory in addition attempts to predict the angular distribution of the scattered field from very rough surfaces (σh/λ≪1). The composite rough surfaces considered in this work have a Gaussian probability density of height and a Gaussian correlation function. Based on these results, it is concluded that the rough surface scattering effects are enhanced at terahertz frequencies and the scattering phenomena show a significant impact, especially in NLoS configuration.
机译:本文初步研究了复合粗糙表面在300 GHz(0.3 THz)至310 GHz(0.31 THz)频谱的超宽带太赫兹(THz)通信信道中的漫反射影响。在太赫兹频率下,由于增加的表面粗糙度,漫反射趋于更高,并且该表面粗糙度甚至在镜面反射方向上(通过在非镜面方向上散射的量)也会导致额外的衰减。两种最著名的建模方法,瑞利-莱斯(RR)理论和贝克曼-基尔霍夫(BK)理论被用来解释表面散射,并通过演示视距(LoS)的多径通道传递函数(CTF)动力学进行比较。和简单的办公环境中的非视距(NLoS)条件。 R-R向量摄动方法可预测光学平滑表面的漫反射(σ h / λ≪1),而经典的B-K理论还尝试从非常粗糙的表面(σ h / λ≪1)。在这项工作中考虑的复合粗糙表面具有高度的高斯概率密度和高斯相关函数。根据这些结果,可以得出结论,在太赫兹频率下,粗糙的表面散射效应得到增强,并且散射现象显示出显着的影响,尤其是在NLoS配置中。

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