不同障碍物下太赫兹通道测量

Hui Li, Weimin Wang, Hua Xu, Yongle Wu, Yuqing Yang, Yichong Rui
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引用次数: 0

摘要

随着下一代通信系统的发展,通信系统的频段逐渐向高频频段发展。而太赫兹频段正成为下一代通信系统的关键技术。因此,对太赫兹波段的研究变得越来越重要。本文研究了太赫兹信号在传播过程中的各种障碍。本文的主要工作是将测量到的障碍物根据其形状分为三类:类似人手的小平面障碍物、大平面障碍物和头部模型。分析了障碍物的厚度、面积和形状对信号传播的影响。小平面障碍物和大平面障碍物的测量结果表明,障碍物越厚,面积越大,太赫兹信号的衰减越大。头部模型的测量结果表明,人体头部的不同位置会在太赫兹波段产生不同的衰减,并且在某一位置的信号强度大于Los。因为刀口衍射产生了其他波源,这些波源与第0波叠加,增强了信号的强度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
THz Channel Measurement for Different Obstacles
With the development of the next generation communication system, the frequency band of the communication system gradually develops to the high-frequency band. And THz band is becoming the key technology of the next generation communication system. Therefore, the research on the THz band becomes more and more important. This paper studied different obstacles to the THz signal in the process of propagation. The main work of this paper is to divide the measured obstacles into three categories according to their shapes: small plane obstacles similar to human hands, large plane obstacles, and the head model. The effects of the thickness, area, and shape of obstacles on signal propagation are analyzed. The measurement results of the small plane obstacles and large plane obstacles show that thicker obstacles with the larger areas will increase the attenuation of the THz signal. The measurement result of the head model shows that different positions of the human head will cause different attenuation at the THz band, and the signal intensity at a certain position is greater than Los. Because the knife-edge diffraction produces other wave sources, which are superimposed with the 0th wave to enhance the strength of the signal.
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