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A RAIN ATTENUATION TIME SERIES MODEL FOR MUOS

机译:MUOS的雨衰减时间序列模型

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Rain attenuation is the predominant signal impairment on satellite-earth communications above 10 GHz [1][2]. The impact can be described as deep slowly-varying amplitude fades where signal phase is "significantly less affected" [3]. For the purpose of real-time hardware testing of Ka fade compensation algorithms on the Mobile User Objective System (MUOS), a rain attenuation time series model is developed. The model is based on the ONERA/CNES Spectral Model [4]. Gaussian white noise is filtered/accumulated and then shaped using an asymmetric non-linearity based on the ITU-R P. 618-8 complementary cumulative distribution function (CCDF) [5]. A resulting realization for a heavy rain fade on the harshest weather MUOS Ka link is presented. The CCDF and fade slope of the generated time series realization are computed and shown to be consistent with the ITU CCDF data. The time series is implemented in the MUOS Ka Link Effect Simulator (Ka-LES) using real-time file playback. The requirements on the hardware simulator are shown to be sufficient for testing the MUOS satellite prior to launch.
机译:雨衰减是10 GHz [1] [2]的卫星地球通信的主要信号损伤。撞击可以描述为深缓慢变化的幅度渐渐衰落,信号相位为“显着较小”[3]。为了在移动用户客观系统(MUOS)上的KA淡化补偿算法的实时硬件测试,开发了雨衰减时间序列模型。该模型基于Onera / CNES光谱模型[4]。通过基于ITU-R P. 618-8互补累积分布函数(CCDF)的不对称非线性,过滤/累积高斯白噪声,然后使用不对称的非线性成形。提出了在最恶劣的天气MUOS KA链路上对大雨淡化的实现。计算生成的时间序列实现的CCDF和淡化斜率,并显示与ITU CCDF数据一致。使用实时文件播放Muos Ka链路效果模拟器(KA-LES)在Muos序列中实现。硬件模拟器对硬件模拟器的要求是足以在推出之前测试MUOS卫星的要求。

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