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Cross-Calibration between ASTER and MODIS Visible to Near-Infrared Bands for Improvement of ASTER Radiometric Calibration

机译:近红外波段可见的ASTER和MODIS的交叉校准可改善ASTER辐射定标

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摘要

Radiometric cross-calibration between the Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) and the Terra-Moderate Resolution Imaging Spectroradiometer (MODIS) has been partially used to derive the ASTER radiometric calibration coefficient (RCC) curve as a function of date on visible to near-infrared bands. However, cross-calibration is not sufficiently accurate, since the effects of the differences in the sensor’s spectral and spatial responses are not fully mitigated. The present study attempts to evaluate radiometric consistency across two sensors using an improved cross-calibration algorithm to address the spectral and spatial effects and derive cross-calibration-based RCCs, which increases the ASTER calibration accuracy. Overall, radiances measured with ASTER bands 1 and 2 are on averages 3.9% and 3.6% greater than the ones measured on the same scene with their MODIS counterparts and ASTER band 3N (nadir) is 0.6% smaller than its MODIS counterpart in current radiance/reflectance products. The percentage root mean squared errors (%RMSEs) between the radiances of two sensors are 3.7, 4.2, and 2.3 for ASTER band 1, 2, and 3N, respectively, which are slightly greater or smaller than the required ASTER radiometric calibration accuracy (4%). The uncertainty of the cross-calibration is analyzed by elaborating the error budget table to evaluate the International System of Units (SI)-traceability of the results. The use of the derived RCCs will allow further reduction of errors in ASTER radiometric calibration and subsequently improve interoperability across sensors for synergistic applications.
机译:先进的星载热发射和反射辐射仪(ASTER)与Terra-中等分辨率成像光谱仪(MODIS)之间的辐射交叉校准已被部分用于推导ASTER辐射校准系数(RCC)曲线作为日期的可见函数。近红外波段。但是,交叉校准不够准确,因为不能完全缓解传感器光谱和空间响应差异的影响。本研究试图使用改进的交叉校准算法评估两个传感器之间的辐射一致性,以解决光谱和空间效应并推导基于交叉校准的RCC,从而提高ASTER校准精度。总体而言,使用ASTER频段1和2测得的辐射度平均比在同一场景下使用MODIS对应物测得的辐射度分别高3.9%和3.6%,而ASTER 3N波段(天底)在当前辐射度/下比其MODIS对应度小0.6%。反射率产品。对于ASTER波段1、2和3N,两个传感器的辐射之间的均方根误差百分比(%RMSEs)分别为3.7、4.2和2.3,这比所需的ASTER辐射度校准精度稍大或小(4 %)。通过制定误差预算表来评估结果的国际单位制(SI)可追溯性,从而分析了交叉校准的不确定性。派生的RCC的使用将允许进一​​步减少ASTER辐射校准中的误差,并随后提高跨传感器的互操作性,以实现协同应用。

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