论文标题
3D Terahertz通信系统具有阻塞和方向天线的覆盖范围分析
Coverage Analysis for 3D Terahertz Communication Systems with Blockage and Directional Antennas
论文作者
论文摘要
当前无线通信系统中频谱资源的稀缺性引起了Terahertz(THZ)频段的巨大研究兴趣。该频段的特征是从根本上不同的传播特性,导致与我们迄今为止在较低频率下观察到的干扰结构不同。在本文中,我们为在三维(3D)环境中的THZ通信系统中下行链路传输的覆盖率概率得出了新的表达。首先,我们建立了一个3D传播模型,该模型考虑了分子吸收损失,接入点(AP)和用户设备(UES),附近AP的干扰以及由移动人类造成的动态阻塞。然后,我们基于主导干扰分析来开发一种新颖的易于使用的分析框架,以评估覆盖范围的概率,其新颖性在于瞬时干扰和THZ设备的垂直高度的结合。我们的数值结果证明了我们的分析的准确性,并表明当传输距离增加时,覆盖率概率显着降低。我们还显示了增加的阻滞剂密度,而AP密度的增加对覆盖范围的性能施加了不同的影响,而感兴趣的UE-AP链接处于视线状态。我们进一步表明,通过增加AP的天线定向性带来的覆盖范围性能改善要高于增加UES天线定向性带来的覆盖率。
The scarcity of spectrum resources in current wireless communication systems has sparked enormous research interest in the terahertz (THz) frequency band. This band is characterized by fundamentally different propagation properties resulting in different interference structures from what we have observed so far at lower frequencies. In this paper, we derive a new expression for the coverage probability of downlink transmission in THz communication systems within a three-dimensional (3D) environment. First, we establish a 3D propagation model which considers the molecular absorption loss, 3D directional antennas at both access points (APs) and user equipments (UEs), interference from nearby APs, and dynamic blockages caused by moving humans. Then, we develop a novel easy-to-use analytical framework based on the dominant interferer analysis to evaluate the coverage probability, the novelty of which lies in the incorporation of the instantaneous interference and the vertical height of THz devices. Our numerical results demonstrate the accuracy of our analysis and reveal that the coverage probability significantly decreases when the transmission distance increases. We also show the increasing blocker density and increasing AP density impose different impacts on the coverage performance when the UE-AP link of interest is in line-of-sight. We further show that the coverage performance improvement brought by increasing the antenna directivity at APs is higher than that brought by increasing the antenna directivity at UEs.