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Interference Studies Between Adjacent Satellite Communications Systems operating Above 10 GHz and Using Power Control as Fade Mitigation Technique

机译:在10 GHz以上工作的相邻卫星通信系统之间的干扰研究,以及使用功率控制作为衰落缓解技术

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摘要

Interference problems are arising from the spectral coexistence between satellite communication networks that operate at frequencies above 10GHz and particularly when they employ power control as fade mitigation technique. This situation is aggravated due to tropospheric propagation phenomena. In this frequency range, rain attenuation is considered to be the dominant tropospheric fading mechanism. The conditional acceptable intersystem interference probability of the Carrier-to-Interference Ratio of a satellite terminal interfered by an adjacent satellite network is defined as a figure of merit and analytically calculated taking into account a physical-mathematical model for the rainfall medium. The correlated propagation fading phenomena over multiple slant paths are accurately incorporated. The proposed model is flexible and can be applied on a global scale since it incorporates the local climatic conditions concerning the point rainfall rate and the spatial rainfall inhomogeneity. Useful numerical results of the proposed model are obtained and the impact of various crucial operational and geometrical parameters of satellite networks' coexistence is examined. The numerical results have been also verified through simulations using a multi-dimensional rain attenuation synthesizer. Finally, simple and easy-calculated formulas for the satellite communication designers for back of the envelope computations are given.
机译:干扰问题是由工作于10GHz以上频率的卫星通信网络之间的频谱共存引起的,尤其是当它们采用功率控制作为衰减缓解技术时。由于对流层传播现象,这种情况加剧了。在此频率范围内,降雨衰减被认为是主要的对流层衰落机制。卫星终端受到相邻卫星网络干扰的载波干扰比的条件可接受的系统间干扰概率定义为品质因数,并考虑到降雨介质的物理数学模型进行分析计算。准确地合并了多个倾斜路径上的相关传播衰落现象。所提出的模型是灵活的并且可以在全球范围内应用,因为它结合了有关点降雨率和空间降雨不均匀性的当地气候条件。获得了所提出模型的有用数值结果,并研究了卫星网络共存的各种关键操作和几何参数的影响。数值结果也已通过使用多维降雨衰减合成器的仿真得到了验证。最后,给出了卫星通信设计人员进行包络线计算的简单易计算公式。

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