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Long-term analysis of GOME in-flight calibration parameters and instrument degradation

机译:对GOME飞行中校准参数和仪器性能的长期分析

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摘要

Since 1995, the Global Ozone Monitoring Experiment (GOME) has measured solar and backscattered spectra in the ultraviolet and visible wavelength range. Now, the extensive data set of the most important calibration parameters has been investigated thoroughly in order to analyze the long-term stability and performance of the instrument. This study focuses on GOME in-flight calibration and degradation for the solar path. Monitoring the sensor degradation yields an intensity decrease of 70percent to 90percent in 240-316 nm and 35percent to 65percent in 311-415 nm. The spectral calibration is very stable over the whole period, although a very complex interaction between predisperser temperature and wavelength was found. The leakage current and the pixel-to-pixel gain increased significantly during the mission, which requires an accurate correction of the measured radiance and irradiance signals using proper calibration parameters. Finally, several outliers in the data sets can be directly assigned to instrument and satellite anomalies.
机译:自1995年以来,全球臭氧监测实验(GOME)一直在紫外线和可见光波长范围内测量太阳光谱和反向散射光谱。现在,已经对最重要的校准参数的广泛数据集进行了全面研究,以分析仪器的长期稳定性和性能。这项研究的重点是针对太阳路径的国美飞行中校准和退化。监视传感器的退化会导致强度在240-316 nm范围内降低70%至90%,在311-415 nm范围内降低35%至65%。尽管发现预分散器温度和波长之间存在非常复杂的相互作用,但光谱校准在整个周期内都非常稳定。在执行任务期间,泄漏电流和像素到像素增益显着增加,这需要使用适当的校准参数来准确校正测得的辐射和辐照信号。最后,可以将数据集中的几个异常值直接分配给仪器和卫星异常。

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