JOURNAL ARTICLE

Weighted Mean Annual Rain Height Applied to Rain Attenuation Prediction on Earth-Space Links

Leke LinShoubao ZhangXin ZhangXiaojing HaoZhenwei ZhaoQinglin ZhuRui Zhang

Year: 2022 Journal:   International Journal of Antennas and Propagation Vol: 2022 Pages: 1-7   Publisher: Hindawi Publishing Corporation

Abstract

Rain height is crucial for rain attenuation prediction along slant paths, such as Earth-space links. The global digital map of the mean annual rain height is given in Recommendation ITU-R P.839-4. The disadvantage of this model is that heavy rainfall in most regions of the middle and high latitudes of the world is typically concentrated over a few months, such as summer in North China, and the mean rain height during these months and the mean annual rain height are often significantly different. In this study, a new weighted mean annual rain height is proposed by using the ratio of the mean monthly rainfall to the mean annual rainfall as the weight. The analysis shows that the weighted mean annual rain heights have been closer to the statistical rain heights during heavy rainfall in general. On the other hand, the work of this paper helps to improve the accuracy of the rain attenuation prediction model on Earth-space links in China. However, the weighted mean annual rain heights have different characteristics for different rainfall climate zones. This study will contribute to the research of rain attenuation modelling on Earth-space links.

Keywords:
Rain rate Latitude Environmental science Attenuation Meteorology Precipitation Climate zones Climatology Atmospheric sciences Geography Geology Geodesy

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Citation History

Topics

Precipitation Measurement and Analysis
Physical Sciences →  Earth and Planetary Sciences →  Atmospheric Science
Meteorological Phenomena and Simulations
Physical Sciences →  Earth and Planetary Sciences →  Atmospheric Science
Cryospheric studies and observations
Physical Sciences →  Earth and Planetary Sciences →  Atmospheric Science
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