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首页> 外文期刊>International journal of applied earth observation and geoinformation >Automatic and improved radiometric correction of Landsat imagery using reference values from MODIS surface reflectance images
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Automatic and improved radiometric correction of Landsat imagery using reference values from MODIS surface reflectance images

机译:使用MODIS表面反射率图像的参考值对Landsat影像进行自动和改进的辐射校正

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Radiometric correction is a prerequisite for generating high-quality scientific data, making it possible to discriminate between product artefacts and real changes in Earth processes as well as accurately produce land cover maps and detect changes. This work contributes to the automatic generation of surface reflectance products for Landsat satellite series. Surface reflectances are generated by a new approach developed from a previous simplified radiometric (atmospheric + topographic) correction model. The proposed model keeps the core of the old model (incidence angles and cast-shadows through a digital elevation model [DEM], Earth-Sun distance, etc.) and adds new characteristics to enhance and automatize ground reflectance retrieval. The new model includes the following new features: (1) A fitting model based on reference values from pseudoinvariant areas that have been automatically extracted from existing reflectance products (Terra MODIS MOD09GA) that were selected also automatically by applying quality criteria that include a geostatistical pattern model. This guarantees the consistency of the internal and external series, making it unnecessary to provide extra atmospheric data for the acquisition date and time, dark objects or dense vegetation. (2) A spatial model for atmospheric optical depth that uses detailed DEM and MODTRAN simulations. (3) It is designed so that large time-series of images can be processed automatically to produce consistent Landsat surface reflectance time-series. (4) The approach can handle most images, acquired now or in the past, regardless of the processing system, with the exception of those with extremely high cloud coverage. The new methodology has been successfully applied to a series of near 300 images of the same area including MSS, TM and ETM+ imagery as well as to different formats and processing systems (LPGS and NLAPS from the USGS; CEOS from ESA) for different degrees of cloud coverage (up to 60%) and SLC-off. Reflectance products have been validated with some example applications: time series robustness (for a pixel in a pseudoinvariant area, deviations are only 1.04% on average along the series), spectral signatures generation (visually coherent with the MODIS ones, but more similar between dates), and classification (up to 4 percent points better than those obtained with the original manual method or the CDR products). In conclusion, this new approach, that could also be applied to other sensors with similar band configurations, offers a fully automatic and reasonably good procedure for the new era of long time-series of spatially detailed global remote sensing data.
机译:辐射校正是生成高质量科学数据的先决条件,可以区分产品伪影和地球过程中的实际变化,并可以准确生成土地覆盖图并检测变化。这项工作有助于自动生成Landsat卫星系列的表面反射产品。表面反射率是通过根据以前的简化辐射(大气+地形)校正模型开发的新方法生成的。所提出的模型保留了旧模型的核心(通过数字高程模型[DEM],地球与太阳的距离等的入射角和阴影),并增加了新的特性以增强和自动化地面反射率的检索。新模型包括以下新功能:(1)基于来自伪不变区域的参考值的拟合模型,这些参考不变值是从现有反射率产品(Terra MODIS MOD09GA)中自动提取的,这些反射率产品还通过应用包括地统计模式的质量标准而自动选择模型。这样可以保证内部和外部序列的一致性,从而不必为采集日期和时间,深色物体或茂密的植被提供额外的大气数据。 (2)使用详细的DEM和MODTRAN模拟的大气光学深度空间模型。 (3)经过设计,可以自动处理较大的图像时间序列,以生成一致的Landsat表面反射率时间序列。 (4)该方法可以处理大多数图像,无论处理系统是什么,无论是现在还是过去,除了云覆盖率极高的图像外,该图像都可以处理。新方法已成功应用于一系列相同区域的近300张图像,包括MSS,TM和ETM +图像以及不同格式和处理系统(来自USGS的LPGS和NLAPS;来自ESA的CEOS),用于不同程度的云覆盖率(最高60%)和SLC-off。反射产品已在一些示例应用中得到了验证:时间序列的鲁棒性(对于伪不变区域中的像素,沿该序列的平均偏差仅为1.04%),光谱签名的生成(在视觉上与MODIS一致,但在日期之间更相似) )和分类(比原始手动方法或CDR产品获得的评分高4个百分点)。总之,这种新方法还可以应用于具有类似频带配置的其他传感器,为空间详细的全球遥感数据的长时间序列的新时代提供了一种全自动且合理的程序。

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