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首页> 外文期刊>Vehicular Technology, IEEE Transactions on >Fade Slope Analysis of Ka-Band Earth-LEO Satellite Links Using a Synthetic Rain Field Model
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Fade Slope Analysis of Ka-Band Earth-LEO Satellite Links Using a Synthetic Rain Field Model

机译:利用合成雨场模型分析Ka波段地球-LEO卫星链路的衰落斜率

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摘要

Because the motion of a low Earth orbit (LEO) satellite across the sky causes the Earth-space path to very quickly pass through any rain cells in the vicinity, the degree of rain fading on such paths changes more rapidly and leads to steeper fade slopes than in the geostationary case. Because comprehensive measurement data have not yet been compiled for fading on LEO links in the Ka-band, we have used simulations based on Goldhirsh's method for determining the key parameters of the well-known EXCELL model of a horizontal rain structure from long-term global rain statistics to obtain plausible estimates of the fade slope distributions for selected scenarios. The results that we obtained for geostationary satellites closely match those observed at selected sites during the Advanced Communications Technology Satellite program. The results that we obtained for LEO satellites show how fade slopes will steepen as 1) the altitude of the satellite decreases; 2) the frequency band of operation increases; and 3) the average rain rate increases. Furthermore, they suggest that, at a given probability level, the fade slopes could be between two and ten times greater than those for geostationary satellites and that mobile terminals with a clear view of the sky will experience fade slopes that are similar to those encountered by fixed or transportable terminals. These results have important implications for the design of power control algorithms and other fade-mitigation techniques.
机译:由于低地球轨道(LEO)卫星在天空中的运动会导致地球空间路径非常迅速地通过附近的任何雨单元,因此此类路径上的雨衰程度会更快变化,并导致陡峭的衰落斜率比地球静止的情况要好。由于尚未汇编完整的测量数据以用于Ka波段LEO链路上的衰落,因此我们使用了基于Goldhirsh方法的模拟,以从长期全球范围确定水平降雨结构的著名EXCELL模型的关键参数。降雨统计数据,以获取针对特定场景的衰落斜率分布的合理估计。我们从地球静止卫星获得的结果与“高级通信技术卫星”计划期间在选定站点观察到的结果非常接近。我们对LEO卫星获得的结果表明,随着1)卫星高度的降低,衰落斜率将变得陡峭。 2)工作频段增加; 3)平均降雨率增加。此外,他们建议,在给定的概率水平下,衰落斜率可能比对地静止卫星的衰落斜率大2到10倍,并且具有清晰天空视野的移动终端将经历与衰落斜率相似的衰落斜率。固定或运输终端。这些结果对于功率控制算法和其他衰减缓解技术的设计具有重要意义。

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