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首页> 外文期刊>Journal of atmospheric and oceanic technology >Predicting Simultaneous Nadir Overpasses among Polar-Orbiting Meteorological Satellites for the Intersatellite Calibration of Radiometers
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Predicting Simultaneous Nadir Overpasses among Polar-Orbiting Meteorological Satellites for the Intersatellite Calibration of Radiometers

机译:预测极轨气象卫星中同时的天底过桥,以进行辐射计的星际校准

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摘要

A method for accurately predicting simultaneous nadir overpasses (SNOs) among different sun-synchronous polar-orbiting meteorological satellites is presented for intersatellite radiometer calibration. At each SNO, the radiometers on the two satellites view the earth and its atmosphere at nadir within a few seconds of each other, providing an ideal scenario for the intercalibration of radiometers. The basic mechanism and frequency of occurrences of such events are analyzed. Prediction using the Simplified General Perturbations No. 4 (SGP4), an orbital perturbation model, is presented, and examples of SNOs among the NOAA-16, NOAA-17, Terra, and Aqua satellites are provided. Intersatellite calibration using this approach has the potential for achieving the calibration consistency and traceability required for long-term climate studies.
机译:提出了一种准确预测不同太阳同步极轨气象卫星之间同时发生天底过桥(SNO)的方法,用于星际辐射计校准。在每个SNO处,两颗卫星上的辐射计彼此之间在几秒钟内即可观测到天底处的地球及其大气层,这为辐射计的相互校准提供了理想的方案。分析了此类事件的基本机制和发生频率。提出了使用第4号简化通用扰动(SGP4)(一种轨道扰动模型)进行的预测,并提供了NOAA-16,NOAA-17,Terra和Aqua卫星之间的SNO示例。使用这种方法进行的星际校准具有实现长期气候研究所需的校准一致性和可追溯性的潜力。

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