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Worst Month Tropospheric Attenuation Variability Analysis: ITU Model vs. Rain Gauge Data for Air-Satellite Links

机译:最差月对流层衰减变异性分析:ITU模型与卫星空中链路的雨量计数据

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An important unmanned aircraft system (UAS) application area is in rescue functions in remote areas, where ground station control may not be applicable. In such settings, an air-satellite (AS) communication link may be required. For transmissions in the millimeter wave (mmWave) frequency bands, rain attenuation can be a dominant fading component in the AS link, especially in so-called “worst month” conditions. Several models have been established by the International Telecommunications Union (ITV) to quantify rain attenuation. However, since the models are for global use, results are not always sufficiently accurate in local areas. Hence the use of local precipitation data can improve rain attenuation estimation accuracy. In this paper, we investigate attenuations in the AS channel in two frequency bands (30 and 45 GHz) for Columbia, SC. We use local rain gauge data from the National Oceanic and Atmospheric Administration (NOAA), along with the regional ITV data, as inputs to the ITV tropospheric time series attenuation model. Statistical results for attenuation distributions and time series are analyzed for the worst month. We show that use of local measured rain gauge data can yield rain fades significantly larger than those predicted by the regional ITV data-on the order of 20 dB larger, for probabilities (~ fractions of time) ranging from 0.001 to 0.04.
机译:一个重要的无人机系统(UAS)应用领域是边远地区的救援功能,在这些地区,地面站控制可能不适用。在这种情况下,可能需要卫星空中(AS)通信链接。对于毫米波(mmWave)频带中的传输,降雨衰减可能是AS链路中的主要衰落成分,尤其是在所谓的“最差月份”条件下。国际电信联盟(ITV)建立了几种模型来量化降雨衰减。但是,由于这些模型是供全球使用的,因此结果在局部地区并不总是足够准确。因此,使用本地降水数据可以提高降雨衰减估计的准确性。在本文中,我们调查了南卡罗来纳州哥伦比亚市两个频带(30和45 GHz)的AS信道中的衰减。我们使用来自美国国家海洋和大气管理局(NOAA)的当地雨量计数据以及区域ITV数据作为ITV对​​流层时间序列衰减模型的输入。分析最坏月份的衰减分布和时间序列的统计结果。我们显示,使用本地测量的雨量计数据可以产生的降雨衰落远大于区域ITV数据预测的降雨衰落-概率(〜时间的几分之一)范围在0.001至0.04之间,约为20 dB。

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