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Improved algorithms for the determination of specific attenuation at sea level by dry air and water vapor, in the frequency range 1-350 GHz

机译:改进算法,用于确定1-350 GHz频率范围内干燥空气和水蒸气在海平面上的特定衰减

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摘要

This paper presents new algorithms for the determination of specific attenuation by dry an and water vapor, at sea level, in the frequency range from 1 to 350 GHz. The algorithms are shown to be an improvement on those recommended by the International Radio Consultative Committee (CCIR), by including the effects of high-frequency rotational transitions in oxygen, pressure-induced nitrogen absorption (important for f > 150 GHz) and a quadratic dependence of attenuation on water-vapor density. Simple scaling factors are given to include the effects of temperature dependence of attenuation, over the range – 20°C to 40°C
机译:本文提出了一种新的算法,用于确定在1至350 GHz频率范围内海平面上干燥的水和水蒸气的比衰减。通过包括氧气中的高频旋转跃迁,压力引起的氮吸收(对于f> 150 GHz重要)和二次方的影响,该算法显示出对国际无线电咨询委员会(CCIR)建议的算法的改进。衰减对水蒸气密度的依赖性。给出了简单的比例因子,包括在20°C至40°C范围内衰减对温度的影响。

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