Theoretical and Simulation-based Analysis of Terrestrial Interference to LEO Satellite Uplinks

A. Yastrebova, Ilari Angervuori, N. Okati, Mikko Vehkaperä, M. Höyhtyä, R. Wichman, T. Riihonen
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引用次数: 11

Abstract

The integration of satellite-terrestrial networks is beneficial in terms of the increase of the network capacity and coverage. In such a heterogeneous network, highly efficient spectrum utilization is extremely important. This could be achieved by the single frequency reuse which allows increasing the capacity at the cost of increased interference. Interference is one of the main parameters that limits the link-level performance in such a network. In this paper, we examine the frequency reuse scenario by analyzing the impact of terrestrial interference to the uplink of a low Earth orbiting (LEO) satellite constellation in the high International Mobile Telecommunications (IMT) frequency bands. To this end, we propose a novel stochastic geometry based analytical framework that is able to accommodate various aspects of realistic satellite networks. The accuracy of the analysis is verified by using advanced simulation tools.
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基于理论与仿真的低轨道卫星上行链路地面干扰分析
星地融合有利于增加网络容量和覆盖范围。在这样一个异构网络中,高效的频谱利用是非常重要的。这可以通过单频复用来实现,它允许以增加干扰的代价来增加容量。在这种网络中,干扰是限制链路级性能的主要参数之一。在本文中,我们通过分析地面干扰对低地球轨道(LEO)卫星星座上行链路在国际移动通信(IMT)高频段的影响来研究频率复用方案。为此,我们提出了一种新的基于随机几何的分析框架,该框架能够适应现实卫星网络的各个方面。利用先进的仿真工具验证了分析的准确性。
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