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On-orbit Radiometric Performance Characterization of S-NPP VIIRS Reflective Solar Bands

机译:S-NPP VIIRS反射太阳波段的在轨辐射性能表征

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It has been nearly four years that the S-NPP was launched. In an effort to improve the VIIRS calibration, VIIRS has undergone a number of major look up table updates during this period. RSB bands such as M1 through M3 suggested higher solar diffuser degradation rate. Similarly, for higher wavelengths, even though the solar diffuser degradation is much smaller and even negligible for SWIR bands, bands such as M7 suffer from major degradation due to RTA throughput degradation. Even though the solar diffuser and mirror degradation is well characterized, the data quality needs to be independently validated to ensure that data are well within the specification. We have used on-orbit calibration/validation techniques such as extended SNOs to estimate the bias of these bands and quantify the radiometric performance since launch. Assuming MODIS as a standard reference, intercomparison was performed to analyze the VIIRS radiometric performance. It was observed that some of the VIIRS bands such as M5 and M7 suggest bias on the order of 1.5% or more for most of the time period since early launch. VIIRS bias trends keep changing over time which can be mainly correlated to calibration updates and instrument anomalies. Results on VIIRS on-orbit calibration performance and its bias since early launch will be presented during meeting to help users better understand the data quality and its impacts on broader scientific research and applications.
机译:S-NPP推出已经近四年了。为了改进VIIRS校准,在此期间VIIRS进行了许多主要的查询表更新。 RSB频段(例如M1至M3)表明太阳能扩散器的降解率更高。类似地,对于更高的波长,即使太阳漫射器的退化小得多,甚至对于SWIR波段而言可以忽略不计,但由于RTA吞吐量的下降,诸如M7之类的波段也遭受了严重的退化。即使可以很好地表征太阳漫射器和反射镜的退化情况,也需要对数据质量进行独立验证,以确保数据在规格范围内。自发射以来,我们已使用在轨校准/验证技术(例如扩展SNO)来估计这些频段的偏差并量化辐射性能。假设以MODIS作为标准参考,进行了比较以分析VIIRS辐射测量性能。据观察,自早期发射以来的大部分时间里,某些VIIRS频带(例如M5和M7)显示偏差在1.5%或更高。 VIIRS偏差趋势会随时间不断变化,这主要与校准更新和仪器异常有关。会议期间将介绍VIIRS在轨校准性能及其自早期发射以来的偏差,以帮助用户更好地了解数据质量及其对更广泛的科学研究和应用的影响。

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