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Statistical modeling of atmospheric refractivity for ducting channel from meteorological observation data in marine environments RF interference prediction

机译:海洋环境中气象观测数据对风道大气折射率的统计建模射频干扰预测

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摘要

Ray paths in the atmosphere depend on the variation of atmosphere. In some cases, like a duct, the rays can be enhanced and this can cause unexpected interference between neighboring nations along oceanic paths. To predict such interference levels accurately, we modeled the refractive index profiles around the Korean peninsula statistically using meteorological data. The upper-air observation data were measured by radio sonde at Pohang and Baengnyeongdo Meteorological Observatory, located in the south coastal area and west sea of Korea, respectively. We classified the refractive index profiles into three classes and fitted each duct parameters to suitable probability distribution functions. The ducting channels are generated numerically, and the pass losses were calculated using the split-step discrete mixed Fourier transform (DMFT) algorithm. Simulation results were compared with the experiment data measured in 1999 for a Korea-Japan channel, and an excellent agreement was found.
机译:大气中的射线路径取决于大气的变化。在某些情况下,例如管道,射线可能会增强,这可能会导致沿海洋路径的邻国之间发生意料之外的干扰。为了准确预测此类干扰水平,我们使用气象数据对朝鲜半岛周围的折射率分布进行了统计建模。高空观测数据由分别位于韩国南部沿海地区和西海的浦项和Baengnyeongdo气象台的无线电探空仪测得。我们将折射率分布图分为三类,并将每个导管参数拟合到合适的概率分布函数。数值生成管道通道,并使用分步式离散混合傅立叶变换(DMFT)算法计算通过损耗。将仿真结果与1999年韩国-日本频道的实验数据进行了比较,并发现了很好的一致性。

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