THz Links Performance Study for Gamma Turbulence Links with Path Loss and Pointing Errors

G. K. Varotsos, E. V. Chatzikontis, E. Kapotis, H. Nistazakis, K. Aidinis, V. Christofilakis
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引用次数: 3

Abstract

Over the last years the rapidly growing demands for higher wireless data transfer rates have recently motivated the research community to focus on the exploitation of higher frequency bands, such as the infrared (IR) frequency band and even more recently the terahertz (THz) frequency band (0.3-10 THz) which bridges the gap between millimeter wave (MMW) and IR frequency ranges. Nevertheless, the development of both free space optical (FSO) and THz communication links depends strongly on the randomly varying characteristics of their atmospheric channels along with the stochastic misalignment between transmitter and receiver terminals. Thus, in this work we first introduce Gamma distribution atmospheric turbulence (AT) model in the THz area. In this context, an outage performance comparison between a line of sight (LOS) THz link and a FSO link in terms of outage probability (OP) metric is provided for different AT and stochastic pointing error (PE) conditions. Additionally, the OP for the THz link due to free space path loss (FSPL) and atmospheric attenuation along with stochastic PEs is evaluated. Novel closed-form OP expressions are derived, while proper analytical results reveal and quantify the impact of the above factors. Simulation results are further included to validate our analytical results.
考虑路径损失和指向误差的伽马湍流链路太赫兹链路性能研究
在过去的几年里,对更高的无线数据传输速率的快速增长的需求最近促使研究界关注于开发更高的频段,如红外(IR)频段,甚至最近的太赫兹(THz)频段(0.3-10太赫兹),它弥补了毫米波(MMW)和红外频率范围之间的差距。然而,自由空间光(FSO)和太赫兹通信链路的发展在很大程度上取决于其大气信道的随机变化特性以及发射端和接收端之间的随机失调。因此,本文首先在太赫兹区引入伽玛分布大气湍流(AT)模型。在这种情况下,根据中断概率(OP)度量,提供了不同AT和随机指向误差(PE)条件下视距(LOS)太赫兹链路和FSO链路之间的中断性能比较。此外,还评估了由于自由空间路径损失(FSPL)和大气衰减以及随机PEs导致的太赫兹链路OP。推导出新颖的闭式OP表达式,适当的分析结果揭示并量化了上述因素的影响。仿真结果进一步验证了我们的分析结果。
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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