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Towards Designing Systems with Large Number of Antennas for Range Extension in Ground-to-Air Communications

机译:朝着地下空中通信中的范围扩展的大量天线设计系统

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Providing broadband connectivity to airborne systems using ground based cellular networks is a promising solution as it offers several advantages over satellite-based solutions. However, limited range of terrestrial base stations is a key challenge in full realization of this approach. This paper addresses this problem by proposing a mathematical framework for range extension leveraging large number of antennas at the base station. In contrast to prior works where range is not considered as a design parameter, we model the signal to noise ratio as a function of both number of antennas as well as the range in line-of-sight ground-to-air systems. This allows us to derive analytical expressions to determine the number of antennas required to increase range in different frequency bands and tracking and non tracking scenarios.
机译:使用地面的蜂窝网络提供与空中系统的宽带连接是一个有前途的解决方案,因为它提供了基于卫星的解决方案的几个优点。然而,有限范围的地面基站是充分实现这种方法的关键挑战。本文通过提出用于在基站的大量天线的范围扩展的数学框架来解决这个问题。与之前的作品相比,范围不被视为设计参数,我们将信号与噪声比模型为两次天线的函数以及视线型接地到空气系统的范围。这允许我们推导分析表达式以确定在不同频带和跟踪和非跟踪方案中增加范围所需的天线数量。

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