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Comparison of SNAP-Derived Sentinel-2A L2A Product to ESA Product over Europe

机译:将Snap-errived Sentinel-2a L2a产品与欧洲ESA产品的比较比较

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摘要

Sentinel-2 is a constellation of two satellites launched by the European Space Agency (ESA), respectively on 23 June 2015 and 7 March 2017, to map geophysical parameters over land surfaces. ESA provides Level 2 bottom-of-atmosphere reflectance (BOA) products (ESA-L2A) for Europe, with plans for operational global coverage, as well as the Sen2Cor (S2C) offline processor. In this study, aerosol optical thickness (AOT), precipitable water vapour (WVP) and surface reflectance from ESA-L2A products are compared with S2C output when using identical input Level 1 radiance products. Additionally, AOT and WVP are validated against reference measurement. As ESA and S2C share the same input and atmospheric correction algorithm, it was hypothesized that they should show identical validation performance and that differences between products should be negligible in comparison to the uncertainty of retrieved geophysical parameters due to radiometric uncertainty alone. Validation and intercomparison was performed for five clear-sky growing season dates for each of three ESA-L2A tiles selected to span a range of vegetation and topography as well as to be close to the AERONET measurement site. Validation of S2C (ESA) products using AERONET site measurements indicated an overall root mean square error (RMSE) of 0.06 (0.07) and a bias of 0.05 (0.09) for AOT and 0.20 cm (0.22 cm) and the bias was −0.02 cm (−0.10 cm) for WVP. Intercomparison of S2C-L2A and ESA-L2A showed an overall agreement higher than 99% for scene classification (SCL) maps and negligible differences for WVP (RMSE under 0.09 and R2 above 0.99). Larger disagreement was observed for aerosol optical thickness (AOT) (RMSE up to 0.04 and R2 as low as 0.14). For BOA reflectance, disagreement between products depends on vegetation cover density, topography slope and spectral band. The largest differences were observed for red-edge and infrared bands in mountainous vegetated areas (RMSE up to 4.9% reflectance and R2 as low as 0.53). These differences are of similar magnitude to the radiometric calibration requirements for the Sentinel 2 imager. The differences had minimal impact of commonly used vegetation indices (NDVI, NDWI, EVI), but application of the Sentinel Level 2 biophysical processor generally resulted in proportional differences in most derived vegetation parameters. It is recommended that the consistency of ESA and S2C products should be improved by the developers of the ESA and S2C processors.
机译:哨兵-2是分别由欧洲航天局(ESA)发射了两颗卫星,对2015年6月23日和7星座2017年3月,映对地表地球物理参数。 ESA提供了2级自下而上的大气反射率(BOA)的产品(ESA-L2A)为欧洲,并计划为业务覆盖全球,还有Sen2Cor(S2C)离线处理器。在这项研究中,气溶胶光学厚度(AOT),水汽(WVP)和表面反射率从ESA-L2A产品都采用相同的输入等级1辐射产品当与S2C输出进行比较。此外,AOT和WVP进行验证针对参考测量。由于ESA和S2C共享相同的输入和大气校正算法,有人推测,他们应该显示相同的验证的性能和由于单独辐射的不确定性的产品之间的差别应该是相比于检索到的地球物理参数的不确定性可忽略不计。鉴定和相互比较是针对每次三ESA-L2A五晴空生长季节日期进行选择瓦片跨越各种植被和地形地貌以及为接近AERONET测量站点。 S2C(ESA)的验证使用AERONET现场测量产品所指示的0.06(0.07),用于AOT 0.20厘米(0.22厘米)的总根均方误差(RMSE)和0.05(0.09)的偏压及偏压为-0.02厘米(-0.10厘米),用于WVP。 S2C-L2A和ESA-L2A的比对显示出整体协议高于99%场景分类(SCL)映射和可忽略不计的差异为WVP(RMSE 0.09下和R2在0.99以上)。观察到气溶胶光学厚度大分歧(AOT)(RMSE最多为0.04和R2低至0.14)。对于BOA反射率,产品之间的分歧取决于植被覆盖密度,地形坡度和光谱带。观察到对红色边缘和红外波段山区植被区域(RMSE高达4.9%的反射率和R2低至0.53)最大的差异。这些差异是相似的幅度为哨兵2成像器的辐射校准要求。差异有常用的植被指数(NDVI,NDWI,EVI)的影响最小,但哨兵2级生物物理处理器的应用通常导致大多数衍生植被参数比例的差异。建议的ESA和S2C产品的一致性应该由欧空局和S2C处理器的开发得到改善。

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