Using tools from stochastic geometry, this paper develops a tractable framework to analyze the performance of a mobile user in a two-tier wireless network operating on sub-6GHz and terahertz (THz) transmission frequencies. Specifically, using an equivalence distance approach, we characterize the overall handoff (HO) probability in terms of the horizontal and vertical HO and mobility-aware coverage probability. In addition, we characterize novel coverage probability expressions for THz network in the presence of molecular absorption noise and highlight its significant impact on the users' performance. Specifically, we derive a novel closed-form expression for the Laplace Transform of the cumulative molecular noise and interference observed by a mobile user in a hybrid RF-THz network. Furthermore, we provide a novel approximation to derive the conditional distance distributions of a typical user in a hybrid RF-THz network. Finally, using the overall HO probability and coverage probability expressions, the mobility-aware probability of coverage has been derived in a hybrid RF-THz network. Our mathematical results validate the correctness of the derived expressions using Monte-Carlo simulations. The results offer insights into the adverse impact of users' mobility and molecular noise in THz transmissions on the probability of coverage of mobile users. Our results demonstrate that a small increase in the intensity of terahertz base-stations (TBSs) (about 5 times) can increase the HO probability much more compared to the case when the intensity of RF BSs (RBSs) is increased by 100 times. Furthermore, we note that high molecular absorption can be beneficial (in terms of minimizing interference and molecular noise) for specific deployment intensity of TBSs and the benefits can outweigh the drawbacks of signal degradation due to molecular absorption.
翻译:本文使用透视几何工具, 开发了一个可移植框架, 用于分析移动用户在二层无线网络中在 i- 6Ghz 和 terahertz (Thz) 传输频率上运行的移动用户的性能。 具体地说, 使用等距方法, 我们用水平和垂直 HO 和移动感知覆盖概率来描述总体手动概率(HO) 。 此外, 我们用分子吸收噪音时, 描述Thz 网络的新型覆盖概率表达方式, 并突出其对用户性能的重大影响。 具体地说, 我们为Laplace 转换在混合RF- Thz 传输网络中观察到的累积分子噪音和干扰程度。 我们提供了一种新颖的近距离定位, 以计算出典型用户在混合RF- Thz 网络中有条件的远距离分布分布。 我们的流动性概率可以用来验证我们使用蒙特- Carlo 模拟的衍生表达方式的正确性表达方式。 移动定位用户在最小时间里程中, 递递变的移动速度变化的概率的概率可以显示, 流流流流流流变的概率的概率可以显示, 递增速度的频率的频率的概率值的概率值的概率值比值比。