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Mass data processing of time series Landsat imagery: pixels to data products for forest monitoring

机译:时间序列Landsat影像的海量数据处理:用于森林监测的数据产品的像素

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Free and open access to the Landsat archive has enabled the implementation of national and global terrestrial monitoring projects. Herein, we summarize a project characterizing the change history of Canada's forested ecosystems with a time series of data representing 1984-2012. Using the Composite2Change approach, we applied spectral trend analysis to annual best-available-pixel (BAP) surface reflectance image composites produced from Landsat TM and ETM+ imagery. A total of 73,544 images were used to produce 29 annual image composites, generating approximate to 400 TB of interim data products and resulting in approximate to 25 TB of annual gap-free reflectance composites and change products. On average, 10% of pixels in the annual BAP composites were missing data, with 86% of pixels having data gaps in two consecutive years or fewer. Change detection overall accuracy was 89%. Change attribution overall accuracy was 92%, with higher accuracy for stand-replacing wildfire and harvest. Changes were assigned to the correct year with an accuracy of 89%. Outcomes of this project provide baseline information and nationally consistent data source to quantify and characterize changes in forested ecosystems. The methods applied and lessons learned build confidence in the products generated and empower others to develop or refine similar satellite-based monitoring projects.
机译:对Landsat档案的免费开放访问使国家和全球陆地监测项目得以实施。在此,我们总结了一个项目,该项目以代表1984-2012年的时间序列为特征,描述了加拿大森林生态系统的变化历史。使用Composite2Change方法,我们将光谱趋势分析应用于从Landsat TM和ETM +图像生成的年度最佳可用像素(BAP)表面反射率图像合成物中。总共使用了73,544张图像来生成29种年度图像合成物,生成了大约400 TB的临时数据产品,并产生了大约25 TB的年度无间隙反射复合物和变更产品。平均而言,年度BAP合成物中10%的像素缺少数据,而连续两年或更短的时间内有86%的像素存在数据缺口。变更检测的总体准确性为89%。更改归因的总体准确度为92%,对于代替林火和采伐的准确度更高。更改被分配给正确的年份,准确性为89%。该项目的成果提供了基准信息和全国统一的数据源,以量化和表征森林生态系统的变化。所采用的方法和所汲取的经验教训使人们对所产生的产品充满信心,并使其他人能够开发或改进类似的基于卫星的监测项目。

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