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Analysis of the electronic crosstalk effect in Terra MODIS long-wave infrared photovoltaic bands using lunar images

机译:利用月球图像分析Terra Modis长波红外光伏带中的电子串扰效应

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The Moderate Resolution Imaging Spectroradiometer (MODIS) is one of the key sensors among the suite of remote sensing instruments on board the Earth Observing System Terra and Aqua spacecrafts. For each MODIS spectral band, the sensor degradation has been measured using a set of on-board calibrators. MODIS also uses lunar observations from nearly monthly spacecraft maneuvers, which bring the Moon into view through the space-view port, helping to characterize the scan mirror degradation at a different angles of incidence. Throughout the Terra mission, contamination of the long-wave infrared photovoltaic band (LWIR PV, bands 2730) signals has been observed in the form of electronic crosstalk, where signal from each of the detectors among the LWIR PV bands can leak to the other detectors, producing a false signal contribution. This contamination has had a noticeable effect on the MODIS science products since 2010 for band 27, and since 2012 for bands 28 and 29. Images of the Moon have been used effectively for determining the contaminating bands, and have also been used to derive correction coefficients for the crosstalk contamination. In this paper, we introduce an updated technique for characterizing the crosstalk contamination among the LWIR PV bands using data from lunar calibration events. This approach takes into account both the in-band" and out-of-band" contribution to the signal contamination for each detector in bands 2730, which is not considered in previous works. The crosstalk coefficients can be derived for each lunar calibration event, providing the time dependence of the crosstalk contamination. Application of these coefficients to Earth-view image data results in a significant reduction in image contamination and a correction of the scene radiance for bands 27 30. Also, this correction shows a significant improvement to certain threshold tests in the MODIS Level-2 Cloud Mask. In this paper, we will detail the methodology used to identify and correct the crosstalk contamination for the LWIR PV bands in Terra MODIS. The derived time-dependent crosstalk coefficients will also be discussed. Finally, the impact of the correction on the downstream data products will be analyzed.
机译:适度分辨率的成像光谱辐射器(MODIS)是地球观测系统Terra和Aqua SpaceCrafts的遥感仪器套件中的关键传感器之一。对于每个MODIS光谱带,使用一组车载校准器测量传感器劣化。 MODIS还使用近月航天器演习的月球观测,使月球通过空间视图端口调入视图,有助于以不同的入射角表征扫描镜劣化。在整个Terra任务中,已经以电子串扰的形式观察到长波红外光伏带(LWIR PV,带2730)信号的污染,其中LWIR PV带中的每一个检测器中的信号可以泄漏到其他探测器,产生虚假信号贡献。这种污染对自2010年为频段27以来对MODIS科学产品有明显的影响,自2012年以来为频带28和29.已经有效地用于确定污染频带的图像,并且还被用于得出校正系数对于串扰污染。在本文中,我们介绍了使用来自月球校准事件的数据来表征LWIR PV频段之间的串扰污染的更新技术。这种方法考虑了带内的“和带外”对频带2730中的每个检测器的信号污染的贡献,这在以前的作品中不考虑。可以为每个月球校准事件导出串扰系数,提供串扰污染的时间依赖性。这些系数在地球视图图像数据中的应用导致图像污染的显着降低和频带27 30的场景辐射的校正。此外,该校正对MODIS电平-2云掩模的某些阈值测试显示了显着改善。在本文中,我们将详细介绍用于识别和校正Terra Modis中LWIR PV频段的串扰污染的方法。还将讨论衍生的时间依赖性串扰系数。最后,将分析校正对下游数据产品的影响。

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