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Radiometric cross-calibration of the Terra MODIS and Landsat 7 ETM+ using an invariant desert site

机译:使用不变的沙漠地带对Terra MODIS和Landsat 7 ETM +进行辐射交叉校准

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A methodology for long-term radiometric cross-calibration between the Terra Moderate Resolution Imaging Spectroradiometer (MODIS) and Landsat 7 (L7) Enhanced Thematic Mapper Plus (ETM+) sensors was developed. The approach involves calibration of near-simultaneous surface observations between 2000 and 2007. Fifty-seven cloud-free image pairs were carefully selected over the Libyan desert for this study. The Libyan desert site (+28.55°, +23.39°), located in northern Africa, is a high reflectance site with high spatial, spectral, and temporal uniformity. Because the test site covers about 12 kmxl3 km, accurate geometric preprocessing is required to match the footprint size between the two sensors to avoid uncertainties due to residual image misregistration. MODIS Level 1B radiometrically corrected products were reprojected to the corresponding ETM+ image's Universal Transverse Mercator (UTM) grid projection. The 30 m pixels from the ETM+ images were aggregated to match the MODIS spatial resolution (250 m in Bands 1 and 2, or 500 m in Bands 3 to 7). The image data from both sensors were converted to absolute units of at-sensor radiance and top-of-atmosphere (TOA) reflectance for the spectrally matching band pairs. For each band pair, a set of fitted coefficients (slope and offset) is provided to quantify the relationships between the testing sensors. This work focuses on long-term stability and correlation of the Terra MODIS and L7 ETM+ sensors using absolute calibration results over the entire mission of the two sensors. Possible uncertainties are also discussed such as spectral differences in matching band pairs, solar zenith angle change during a collection, and differences in solar irradiance models.
机译:开发了Terra中分辨率成像光谱仪(MODIS)和Landsat 7(L7)增强型专题制图仪Plus(ETM +)传感器之间进行长期辐射互标的方法。该方法涉及校准2000年至2007年之间几乎同时进行的地面观测。本次研究在利比亚沙漠上仔细选择了57个无云图像对。位于北部非洲的利比亚沙漠站点(+ 28.55°,+ 23.39°)是具有高空间,光谱和时间均匀性的高反射率站点。由于测试地点的覆盖范围约为12 kmxl3 km,因此需要精确的几何预处理以匹配两个传感器之间的覆盖区大小,以避免由于残留图像配准不良而造成的不确定性。将MODIS 1B级经辐射校正的产品重新投影到相应的ETM +图像的通用横轴墨卡托(UTM)网格投影中。汇总来自ETM +图像的30 m像素以匹配MODIS空间分辨率(波段1和波段2为250 m,波段3至波段7为500 m)。对于光谱匹配的波段对,将两个传感器的图像数据转换为传感器辐射亮度和大气最高(TOA)反射率的绝对单位。对于每个频段对,提供一组拟合系数(斜率和偏移)以量化测试传感器之间的关系。这项工作着眼于Terra MODIS和L7 ETM +传感器的长期稳定性和相关性,使用了两个传感器整个任务期间的绝对校准结果。还讨论了可能的不确定性,例如匹配带对中的光谱差异,收集期间的太阳天顶角变化以及太阳辐照度模型中的差异。

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