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A real-time SHF propagation forecasting system using numerical weather predictions and radar measurements

机译:使用数值天气预报和雷达测量的实时SHF传播预报系统

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For communication systems operating at EHF and SHF frequencies, propagation impairments caused by meteorological phenomena (such as cloud, rain, etc.) become significant. As a result, there is considerable interest in developing fade mitigation techniques. The test and development of these techniques requires simulation tools, particularly attenuation time-series generators. We present a method for the generation of attenuation time series using estimates of the meteorological environment from numerical weather prediction (NWP) systems. We also make use of precipitation estimates derived from weather radar. Fractal downscaling of rain fields can also be performed in order to improve the spatio-temporal resolution of estimates by introducing a stochastic small-scale structure. Time series exhibit the correct first and second order characteristics, as well as the correct spatial correlation, and compare well to the ITU-R recommendations. There are two novelties to this approach: any number of time-coincident time series can be created for different locations; the process is directly applicable for the real-time prediction of propagation conditions. The latter offers the potential to aid in the management of radio resources, where knowledge of forthcoming fades, their depth and duration could be advantageous.
机译:对于在EHF和SHF频率下运行的通信系统,由气象现象(如云,雨等)引起的传播损害变得很明显。结果,开发消减衰减技术引起了极大的兴趣。这些技术的测试和开发需要仿真工具,尤其是衰减时间序列发生器。我们提出了一种使用数值天气预报(NWP)系统对气象环境的估计来生成衰减时间序列的方法。我们还利用从天气雷达获得的降水量估算值。为了引入估计的时空分辨率,还可以通过引入随机的小规模结构来对雨场进行分形缩减。时间序列具有正确的一阶和二阶特性,以及正确的空间相关性,并且可以与ITU-R建议进行很好的比较。这种方法有两个新颖之处:可以为不同的位置创建任意数量的时间一致的时间序列;该过程直接适用于传播条件的实时预测。后者提供了帮助管理无线电资源的潜力,其中即将衰落的知识,其深度和持续时间可能是有利的。

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