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Channel Modeling and Performance Analysis of Airplane-Satellite Terahertz Band Communications

机译:飞机卫星太赫兹频段通信的信道建模与性能分析

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Wireless connectivity in airplanes is becoming more important, demanded, and common. One of the largest bottlenecks with the in-flight Internet is that the airplane is far away from both the satellites and the ground base stations during most of the flight time. Maintaining a reliable and high-rate wireless connection with the airplane over such a long-range link thus becomes a challenge. Microwave frequencies allow for long link distances but lack the data rate to serve up to several hundreds of potential onboard customers. Higher bands in the millimeter-wave spectrum (30 GHz-300 GHz) have, therefore, been utilized to overcome the bandwidth limitations. Still, the per-user throughput with state-of-the-art millimeter-wave systems is an order of magnitude lower than the one available with terrestrial wireless networks. In this paper, we take a step further and study the channel characteristics for the terahertz band (THz, 0.3 THz-10 THz) in order to map the feasibility of this band for aviation. We first propose a detailed channel model for aerial THz communications taking into account both the non-flat Earth geometry and the main features of the frequency-selective THz channel. We then apply this model to estimate the characteristics of aerial THz links in different conditions. We finally determine the altitudes where the use of airplane-to-satellite THz connection becomes preferable over the airplane-to-ground THz link. Our results reveal that the capacity of the airborne THz link may reach speeds ranging from 50-150 Gbps, thus enabling cellular-equivalent data rates to the passengers and staff during the entire flight.
机译:飞机中的无线连接正变得更加重要,所需和共同。与飞行中互联网的最大瓶颈之一是,在大部分飞行时间内,飞机远离卫星和地面基站。因此,在这种远程连杆上与飞机保持可靠和高速的无线连接成为挑战。微波频率允许长链接距离,但缺乏多达数百次潜在板载客户的数据速率。因此,毫米波频谱(30GHz-300 GHz)中的高频带已被利用以克服带宽限制。尽管如此,具有最先进的毫米波系统的每个用户吞吐量比具有地面无线网络可用的数量级低。在本文中,我们进一步迈出了一步,研究了太赫兹带(THz,0.3至10THz-10THz)的信道特性,以便映射该频段的航空的可行性。我们首先提出了一个用于空中THZ通信的详细频道模型,考虑了非平面地球几何形状和频率选择性THz通道的主要特征。然后,我们应用此模型以估计不同条件下的空中THZ链路的特征。我们终于确定了使用飞机到卫星THz连接的高度,优于飞机到地的THz链路。我们的结果表明,空中THZ链路的能力可能达到50-150 Gbps的速度,从而使乘客和工作人员能够在整个航班期间对乘客和员工进行蜂窝等同的数据率。

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