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Alphasat Aldo Paraboni propagation experiment in Graz - frequency scaling analysis

机译:Alphasat Aldo Paraboni传播实验Graz - 频率缩放分析

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In order to study propagation effects for future satellite communication frequencies, the Alphasat Aldo Paraboni payload includes two beacon transmitters at Ka-band (19.701 GHz) and Q-band (39.402 GHz). Among all atmospheric effects, rain has the biggest impact on signal transmission. Often a single statistical relationship (derived from climatic parameters) between rain rate and specific attenuation is used, but it is well known that the variability of the drop size distribution (DSD) for a given rain rate is considerably large and affects the specific attenuation. Frequency scaling is often applied to determine the instantaneous attenuation at the uplink (higher frequency) from a measured attenuation at the downlink (lower frequency). This paper reports on the propagation and disdrometer measurements carried out in Graz (Austria) during 2014. The instantaneous frequency scaling factor obtained from DSD data is analyzed and the instantaneous frequency scaling ITU-R model is compared against beacon measurements.
机译:为了研究未来卫星通信频率的传播效果,AlphaSAT Aldo Paraboni有效载荷包括KA波段(19.701GHz)和Q波段(39.402GHz)的两个信标发射器。在所有大气效应中,雨水对信号传输产生了最大的影响。使用雨率和特定衰减之间的单个统计关系(来自气候参数),但众所周知,给定雨率的跌落尺寸分布(DSD)的可变性相当大,并影响特定衰减。频率缩放通常应用于从下行链路(较低频率)的测量衰减来确定上行链路(较高频率)处的瞬时衰减。本文报告了2014年GRAZ(奥地利)在GRAZ(奥地利)中进行的繁殖和抑菌测量。分析了从DSD数据获得的瞬时频率缩放因子,并将瞬时频率缩放ITU-R模型与信标测量进行比较。

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