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首页> 外文期刊>Remote Sensing >Assessment of the Suomi NPP VIIRS Land Surface Albedo Data Using Station Measurements and High-Resolution Albedo Maps
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Assessment of the Suomi NPP VIIRS Land Surface Albedo Data Using Station Measurements and High-Resolution Albedo Maps

机译:使用站测和高分辨率反照率图评估Suomi NPP VIIRS地表反照率数据

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摘要

Land surface albedo (LSA), one of the Visible Infrared Imaging Radiometer Suite (VIIRS) environmental data records (EDRs), is a fundamental component for linking the land surface and the climate system by regulating shortwave energy exchange between the land and the atmosphere. Currently, the improved bright pixel sub-algorithm (BPSA) is a unique algorithm employed by VIIRS to routinely generate LSA EDR from VIIRS top-of-atmosphere (TOA) observations. As a product validation procedure, LSA EDR reached validated (V1 stage) maturity in December 2014. This study summarizes recent progress in algorithm refinement, and presents comprehensive validation and evaluation results of VIIRS LSA by using extensive field measurements, Moderate Resolution Imaging Spectroradiometer (MODIS) albedo product, and Landsat-retrieved albedo maps. Results indicate that: (1) by testing the updated desert-specific look-up-table (LUT) that uses a stricter standard to select the training data specific for desert aerosol type in our local environment, it is found that the VIIRS LSA retrieval accuracy is improved over a desert surface and the absolute root mean square error (RMSE) is reduced from 0.036 to 0.023, suggesting the potential of the updated desert LUT to the improve the VIIRS LSA product accuracy; (2) LSA retrieval on snow-covered surfaces is more accurate if the newly developed snow-specific LUT (RMSE = 0.082) replaces the generic LUT (RMSE = 0.093) that is employed in the current operational LSA EDR production; (3) VIIRS LSA is also comparable to high-resolution Landsat albedo retrieval (RMSE < 0.04), although Landsat albedo has a slightly higher accuracy, probably owing to higher spatial resolution with less impacts of mixed pixel; (4) VIIRS LSA retrievals agree well with the MODIS albedo product over various land surface types, with overall RMSE of lower than 0.05 and the overall bias as low as 0.025, demonstrating the comparable data quality between VIIRS and the MODIS LSA product.
机译:陆地表面反照率(LSA)是可见光红外成像辐射计套件(VIIRS)环境数据记录(EDR)之一,它是通过调节陆地与大气之间的短波能量交换来连接陆地表面和气候系统的基本组件。当前,改进的亮像素子算法(BPSA)是VIIRS用来从VIIRS大气顶(TOA)观测值常规生成LSA EDR的独特算法。作为一种产品验证程序,LSA EDR于2014年12月达到验证的(V1阶段)成熟度。该研究总结了算法改进的最新进展,并通过使用广泛的现场测量,中分辨率成像光谱仪(MODIS)提出了VIIRS LSA的全面验证和评估结果。 )反照率积,以及Landsat检索的反照率图。结果表明:(1)通过测试更新的沙漠专用查找表(LUT),该表使用更严格的标准来选择我们当地环境中针对沙漠气溶胶类型的专用训练数据,发现VIIRS LSA检索沙漠表面的精度提高了,并且绝对均方根误差(RMSE)从0.036降低到0.023,这表明更新后的沙漠LUT有可能提高VIIRS LSA产品的精度; (2)如果新开发的针对雪的LUT(RMSE = 0.082)替代了当前运行的LSA EDR生产中使用的通用LUT(RMSE = 0.093),则在被雪覆盖的表面上的LSA检索会更加准确; (3)VIIRS LSA也可与高分辨率Landsat反照率检索(RMSE <0.04)相提并论,尽管Landsat反照率的精度略高,这可能是由于较高的空间分辨率和较少的混合像素影响所致; (4)在不同的地表类型上,VIIRS LSA的反演结果与MODIS反射率产品非常吻合,总体RMSE低于0.05,总体偏差低至0.025,证明了VIIRS和MODIS LSA产品的数据质量相当。

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