Modeling of joint rain attenuation in earth-space diversity systems using Gaussian copula

A. Kelmendi, C. Kourogiorgas, A. Hrovat, A. Panagopoulos, G. Kandus, A. Vilhar
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引用次数: 2

Abstract

In this paper, the modeling of joint exceedance probability of rain attenuation based on Gaussian copula is examined for Earth-space dual site diversity systems. Joint complementary cumulative distribution functions (CCDF) of attenuation are used for satellite communications operating at frequencies above 10 GHz, in order to assess the performance and properly design a site diversity system. The modeling of joint CCDF of rain attenuation with Gaussian copula function is tested based on existing experimental data for different sites with various distances, elevation angles, baseline orientations, operating frequencies etc. The performance analysis shows that Gaussian copula can be used for modeling of joint CCDF of rain attenuation. Moreover, it is shown that especially for small separation distances and for low elevation angles, Gaussian copula gives significantly better results compared to previously proposed Archimedean copulas.
地-空分集系统联合雨衰减的高斯耦合模型
本文研究了基于高斯耦合的地-空二元分集系统雨衰减联合超越概率建模方法。利用衰减的联合互补累积分布函数(CCDF)对10ghz以上频率的卫星通信进行性能评估,合理设计站点分集系统。利用已有的实验数据,对不同地点不同距离、不同仰角、不同基线方位、不同工作频率等条件下的降雨衰减联合CCDF模型进行了高斯耦合函数的验证。性能分析表明,高斯联结公式可以用于雨衰减联合CCDF的建模。此外,研究表明,特别是在较小的分离距离和较低的仰角下,高斯copula的结果明显优于先前提出的阿基米德copula。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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