Dust Storm Attenuation Modeling Based on Measurements in Sudan

Elsheikh, Elfatih A. A. , Islam, Md. Rafiqul , Habaebi, Mohamed H. , Ismail, Ahmad F. , Zyoud, Alhareth

2017-08-01 IEEE TRANSACTIONS ON ANTENNAS AND PROPAGATION 2017   65(卷), 8(期), (4200-4208页)

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Microwave (MW) and millimeter-wave (mmW) propagation are severely affected by dust storms and sand storms in arid and semi-arid areas. Electromagnetic waves may suffer from attenuation due to suspended particles during a dust storm. This paper proposes an empirical model to predict the attenuation due to dust storms based on a one-year measurement of visibility, humidity and their effects on MW links in Sudan. Signal strength variations on two operational MW links at 14 and 22 GHz as well as visibility were monitored simultaneously. The model is developed empirically using measured attenuation and measured storm characteristics (e.g., visibility, dielectric constant, frequency, and moisture content). The predicted attenuation from the proposed empirical model is compared with the attenuation at frequencies ranging from 7.5 to 40 GHz measured at different locations, and good agreement is found. Additionally, this method is characterized by simplicity and capability to predict reliable dust storm attenuation for a wide range of frequencies and moisture levels.