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Frequency scaling of slant-path atmospheric attenuation in the absence of rain for millimeter-wave links

机译:毫米波链路在没有降雨的情况下倾斜路径大气衰减的频率标度

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Broadband satellite communications systems, either used for broadcast or fixed satellite services, have grown continuously in recent years. This has led to the use of higher frequency bands, from the Ku (14/11 GHz) to the Ka band (30/20 GHz) in the last decade, and with the expectation of using the Q/V band (50/40 GHz) and even the W band (75–110 GHz) in the future. As frequency increases, radio wave propagation effects in the slant-path within the troposphere are becoming more and more relevant. The objective of this research is the proposal of frequency scaling approximations for the total attenuation in the absence of rain, a condition that occurs during the highest percentages of time, usually more than 95% in temperate climates. There is a strong relationship between total attenuation at different frequencies, as it arises from the same physical phenomena, namely, the presence of oxygen, water vapor, and clouds in the slant path. This strong relationship allows frequency scaling estimations to be proposed. In particular, polynomials for instantaneous frequency scaling of total attenuation under these conditions have been calculated for a set of frequencies in the range 10–100 GHz, based on atmospheric profiles of 60 sites from all over the world and physical models of attenuation. Global polynomials are provided for the 72 combinations of nine significant frequencies, which can be used to estimate attenuation at a frequency band from its known value at a different one. Refined expressions have also been calculated for different climatic zones, providing more precise estimations.
机译:近年来,用于广播或固定卫星业务的宽带卫星通信系统持续增长。这导致在过去十年中使用了更高的频段,从Ku(14/11 GHz)到Ka频段(30/20 GHz),并期望使用Q / V频段(50/40 GHz),甚至将来的W频段(75–110 GHz)。随着频率的增加,对流层内倾斜路径中的无线电波传播效应变得越来越重要。这项研究的目的是针对不存在雨水的情况下的总衰减提出频率比例近似的建议,这种情况发生在最高时间百分比内,在温带气候下通常超过95%。在不同频率下的总衰减之间存在很强的关系,因为它是由相同的物理现象引起的,即倾斜路径中存在氧气,水蒸气和云。这种牢固的关系使得可以提出频率缩放估计。特别是,根据来自全世界60个站点的大气廓线和衰减的物理模型,针对10–100 GHz范围内的一组频率,计算了这些条件下总衰减的瞬时频率缩放的多项式。提供了针对九个有效频率的72个组合的全局多项式,这些多项式可用于根据某个频段的已知值来估计该频段的衰减。还针对不同的气候区域计算了精确的表达式,从而提供了更精确的估计。

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