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The Aquarius Simulator and Cold-Sky Calibration

机译:水瓶座模拟器和冷天校准

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A numerical simulator has been developed to study remote sensing from space in the spectral window at 1.413 GHz (L-band), and it has been used to optimize the cold-sky calibration (CSC) for the Aquarius radiometers. The celestial sky is a common cold reference in microwave radiometry. It is currently being used by the Soil Moisture and Ocean Salinity satellite, and it is planned that, after launch, the Aquarius/SAC-D observatory will periodically rotate to view “cold sky” as part of the calibration plan. Although radiation from the celestial sky is stable and relatively well known, it varies with location. In addition, radiation from the Earth below contributes to the measured signal through the antenna back lobes and also varies along the orbit. Both effects must be taken into account for a careful calibration. The numerical simulator has been used with the Aquarius configuration (antennas and orbit) to investigate these issues and determine optimum conditions for performing a CSC. This paper provides an overview of the simulator and the analysis leading to the selection of the optimum locations for a CSC.
机译:已经开发出一种数字模拟器来研究1.413 GHz(L波段)光谱窗口中来自太空的遥感,并且已将其用于优化水瓶座辐射计的冷天校准(CSC)。在微波辐射测量中,天空是常见的寒冷参考。目前,土壤水分和海洋盐度卫星正在使用它,并且计划发射后,水瓶座/ SAC-D天文台将定期旋转以观察“寒冷的天空”,这是校准计划的一部分。尽管来自天上的辐射是稳定的,并且相对众所周知,但它随位置而变化。此外,来自下方地球的辐射通过天线后瓣有助于测量信号,并且沿轨道变化。必须仔细考虑两种影响。数值模拟器已与Aquarius配置(天线和轨道)一起使用,以调查这些问题并确定执行CSC的最佳条件。本文概述了模拟器,并进行了分析,为CSC选择了最佳位置。

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