卫星与地面综合移动系统的干扰问题分析

V. Deslandes, J. Tronc, A. Beylot
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引用次数: 42

摘要

近年来卫星和地面综合移动系统的出现,对卫星和地面用户之间的干扰协调提出了新的挑战。地面部分旨在改善人口密集地区的卫星覆盖范围,在这些地区,卫星通信经常受到建筑物造成的高阻塞因素的影响。“集成系统”是指由多波束卫星基网络(SBN)和重复使用与卫星相同频带的互补地面分量(CGC)网络组成的系统。这一原理对于提高整个系统的频谱效率和在空间上优化低频段(如L或s频段)可用的稀缺频谱资源具有重要意义。假设卫星和CGCs由同一个资源管理实体控制,从而允许在两个组件之间协调频率分配。考虑到系统中地面和卫星用户数量之间的预测平衡,了解两个组件之间的相互干扰是设计这种系统的关键因素。提出了一种由多波束卫星、地面基站和卫星/地面混合用户终端组成的综合移动网络模型。该模型随后用于欧洲大陆尺度网络的统计模拟,以分析卫星和地面用户之间的干扰。分析了卫星频率复用模式、地面小区和卫星小区之间的隔离带大小等参数对系统性能的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of interference issues in Integrated Satellite and Terrestrial Mobile Systems
The recent emergence of satellite and terrestrial integrated mobile systems raises new challenges for interference coordination between satellite and terrestrial users. The terrestrial component aims at improving the satellite coverage in highly populated areas where satellite communications often suffer from a high blocking factor caused by the buildings. The term “integrated system” refers to a system composed of a multi-beam Satellite Based Network (SBN) and a Complementary Ground Component (CGC) network that re-uses the same frequency band than the satellite's one. This principle is of major interest to improve the spectral efficiency of the overall system and spatially optimize the usage of scarce spectrum resource available at low frequency bands such as L or S-band. Satellite and CGCs are assumed to be controlled by the same resource management entity which allows the coordination of frequency allocation between both components. The understanding of mutual interferences between both components is a key element for the design of such a system taking into account the forecasted balance between the number of terrestrial and satellite users in the system. This paper presents a model of an integrated mobile network composed of a multi-beam satellite, terrestrial base stations and hybrid satellite/terrestrial user terminals. This model is then used for statistical simulations of a continental scale network over Europe in order to analyze interferences between satellite and terrestrial users. The influence of several parameters such as the satellite frequency reuse pattern and the exclusion zone size between terrestrial and satellite cells is then presented.
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