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Change Detection over Sokolov Open-Pit Mining Area, Czech Republic, Using Multi-Temporal HyMAP Data (2009-2010)

机译:使用多时间Hymap数据(2009-2010)改变捷克共和国Sokolov Open-Pit矿区的变更检测

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Two HyMap images acquired over the same lignite open-pit mining site in Sokolov, Czech Republic, during the summers of 2009 and 2010 (12 months apart), were investigated in this study. The site selected for this research is one of three test sites (the others being in South Africa and Kyrgyzstan) within the framework of the EO-MINERS FP7 Project (http://www.eo-miners.eu). The goal of EO-MINERS is to "integrate new and existing Earth Observation tools to improve best practice in mining activities and to reduce the mining related environmental and societal footprint". Accordingly, the main objective of the current study was to develop hyperspectral-based means for the detection of small spectral changes and to relate these changes to possible degradation or reclamation indicators of the area under investigation. To ensure significant detection of small spectral changes, the temporal domain was investigated along with careful generation of reflectance information. Thus, intensive spectroradiometric ground measurements were carried out to ensure calibration and validation aspects during both overflights. The performance of these corrections was assessed using the Quality Indicators setup developed under a different FP7 project-EUFAR (http://www.eufar.net), which helped select the highest quality data for further work. This approach allows direct distinction of the real information from noise. The reflectance images were used as input for the application of spectral-based change-detection algorithms and indices to account for small and reliable changes. The related algorithms were then developed and applied on a pixel-by-pixel basis to map spectral changes over the space of a year. Using field spectroscopy and ground truth measurements on both overpass dates, it was possible to explain the results and allocate spatial kinetic processes of the environmental changes during the time elapsed between the flights. It was found, for instance, that significant spectral changes are capable of revealing mineral processes, vegetation status and soil formation long before these are apparent to the naked eye. Further study is being conducted under the above initiative to extend this approach to other mining areas worldwide and to improve the robustness of the developed algorithm.
机译:在2009年和2010年夏天(分开的12个月),在捷克共和国Sokolov,捷克共和国Sokolov的同样的褐煤露天矿业网站上获得了两台Hymap图像。选择该研究的网站是在EO-Miners FP7项目的框架内(http://www.eo-miners.eu)的三个测试网站(其他人在南非和吉尔吉斯斯坦)中的一个。 Eo-Miners的目标是“整合新的和现有地球观测工具,以改善采矿活动的最佳实践,并减少采矿相关环境和社会足迹”。因此,目前研究的主要目的是开发基于极谱的方法,用于检测小光谱变化,并将这些变化与在调查中可能的降解或接收指标相关。为了确保显着检测小光谱变化,研究了时间域以及仔细生成反射率信息。因此,密集的光谱辐射地面测量进行了两个飞越过程中,确保校准和验证方面。使用在不同的FP7项目 - EUFAR(http://www.eufar.net)下开发的质量指标设置来评估这些校正的性能,这有助于选择最高质量的数据进行进一步的工作。这种方法允许从噪声中直接区分真实信息。反射率图像被用作应用基于光谱的变化检测算法和指标的输入,以考虑小而可靠的变化。然后将相关算法开发并应用于像素逐个像素的基础,以在一年的空间上映射频谱变化。使用现场光谱和地面真理测量在两个立交桥日期中,可以解释在航班之间经过的时间内的结果并分配环境变化的空间动力学过程。例如,发现,显着的光谱变化能够揭示矿物过程,植被状况和土壤形成在肉眼上显而易见。在上述举措下正在进行进一步研究,以将这种方法扩展到全球其他采矿区,并提高发达算法的稳健性。

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