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Estimation of Rain Attenuation of Earth-to-Satellite Link over Nepal for Ku Ka Bands

机译:K U &K A频段估算尼泊尔接地卫星链路雨雨衰减

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Due to the extensive use of lower frequency bands & huge demand of large bandwidth in satellite communications, engineers need to use the higher frequency bands such as Ku to Ka bands. However, the rain attenuation is severe in these bands. Before installing an earth station, the estimation of the rain attenuation is a prerequisite task to know the required fade margin to ensure a certain availability of the network. In this paper, we estimate the rain attenuation for different regions of Nepal. The R-H and ITU models are used for rain rate and rain attenuation estimation, respectively. A significant temporal and spatial variation in rain attenuation is observed. Among three different regions of Nepal, namely Terai, Hilly, and Himalaya, while the maximum rain attenuation is found in Terai region, the minimum is in Himalaya. Jhapa of the Terai region experiences the highest attenuation and requires 80 dB and 24 dB fade margin for Ka and Ku bands, respectively. Solukhumbu of Himalaya region, on the other hand, is found to be the least rain attenuation affected site. The required fade margin for an earth station site in Solukhumbu for using Ku and Ka bands are 12 dB and 40 dB, respectively. The minimum attenuation, which is observed in November and December, is several times lower compared to the highest rain attenuation, observed in July. The minimum attenuation caused by the Ka band is higher than the maximum attenuation caused by the Ku band irrespective of the locations of the earth station sites.
机译:由于频率较低的频段和大带宽的巨大需求的广泛使用,工程师需要使用较高的频段,例如k u k a 乐队。然而,这些乐队中的雨衰减是严重的。在安装地球站之前,雨衰减的估计是了解所需的褪色边缘以确保网络的某种可用性的前提任务。在本文中,我们估计了尼泊尔不同地区的雨衰。 R-H和ITU模型分别用于雨率和雨衰减估计。观察到雨衰减的显着的时间和空间变化。在尼泊尔的三个不同地区,即Terai,Hilly和Himalaya,而在Terai地区发现最大的雨衰,最小是喜马拉雅州。 Terai Region的Jhapa经历了最高的衰减,并且需要80 dB和24 dB褪色边缘 a 和K. u 乐队分别。另一方面,喜马拉雅地区的Solukhumbu被认为是影响受影响的衰减遗址。 Solukhumbu的地球站点的所需褪色边缘使用k u 和K. a 频带分别为12 dB和40 dB。与7月份的最高雨量相比,在11月和12月观察到的最低衰减是几次,于7月份观察到的最高衰减。由k引起的最小衰减 a 频段高于K引起的最大衰减 u 频段无论地球站点的位置如何。

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