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首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing >The slant path atmospheric refraction calibrator: an instrument to measure the microwave propagation delays induced by atmospheric water vapor
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The slant path atmospheric refraction calibrator: an instrument to measure the microwave propagation delays induced by atmospheric water vapor

机译:倾斜路径大气折射校准器:一种用于测量大气水蒸气引起的微波传播延迟的仪器

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The Slant Path Atmospheric Refraction Calibrator (SPARC) has been developed to measure the water-vapor-induced propagation delay experienced by a radio signal traversing the atmosphere. SPARC measures the difference in the travel times between an optical and a microwave signal propagating along the same atmospheric path. Since the refractivity of dry air is similar for both the microwave and optical signals, the difference in arrival times is a sensitive measure of the water-vapor-induced microwave delay. The instrument is capable of measuring the difference in the optical and microwave travel times with an accuracy of 15 ps or better. SPARC was developed to provide an accurate, independent method for evaluating other techniques used to determine the atmospheric water-vapor-induced delay.
机译:倾斜路径大气折射校准器(SPARC)的开发目的是测量水蒸气引起的穿越大气的无线电信号所经历的传播延迟。 SPARC测量沿同一大气路径传播的光信号和微波信号之间传播时间的差异。由于干燥空气的折射率对于微波和光信号均相似,因此到达时间的差异是水蒸气引起的微波延迟的敏感度量。该仪器能够以15 ps或更高的精度测量光学和微波传播时间的差异。开发SPARC是为了提供一种准确,独立的方法来评估用于确定大气水蒸气引起的延迟的其他技术。

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