首页> 外文期刊>Bulletin of Volcanology: Journal of the International Association of Volcanology and Chemistry of the Earth s Interior >Time series analysis of infrared satellite data for detecting thermal anomalies: A hybrid approach
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Time series analysis of infrared satellite data for detecting thermal anomalies: A hybrid approach

机译:用于检测热异常的红外卫星数据的时间序列分析:一种混合方法

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摘要

We developed and tested an automated algorithm that analyzes thermal infrared satellite time series data to detect and quantify the excess energy radiated from thermal anomalies such as active volcanoes. Our algorithm enhances the previously developed MODVOLC approach, a simple point operation, by adding a more complex time series component based on the methods of the Robust Satellite Techniques (RST) algorithm. Using test sites at Anatahan and Kīlauea volcanoes, the hybrid time series approach detected ~15% more thermal anomalies than MODVOLC with very few, if any, known false detections. We also tested gas flares in the Cantarell oil field in the Gulf of Mexico as an end-member scenario representing very persistent thermal anomalies. At Cantarell, the hybrid algorithm showed only a slight improvement, but it did identify flares that were undetected by MODVOLC. We estimate that at least 80 MODIS images for each calendar month are required to create good reference images necessary for the time series analysis of the hybrid algorithm. The improved performance of the new algorithm over MODVOLC will result in the detection of low temperature thermal anomalies that will be useful in improving our ability to document Earth's volcanic eruptions, as well as detecting low temperature thermal precursors to larger eruptions.
机译:我们开发并测试了一种自动算法,该算法可以分析红外热卫星时间序列数据,以检测和量化从热异常(例如活火山)辐射的多余能量。我们的算法通过基于鲁棒卫星技术(RST)算法的方法添加更复杂的时间序列成分,增强了以前开发的MODVOLC方法(一种简单的点运算)。使用Anatahan和Kīlauea火山的测试地点,混合时间序列方法比MODVOLC探测到的热异常多出15%,而已知的错误探测则很少(如果有的话)。我们还对墨西哥湾坎塔雷尔油田的天然气火炬进行了测试,以此作为代表极端持续热异常的最终成员方案。在坎塔雷尔(Cantarell),混合算法仅显示了一点改进,但​​确实可以识别出MODVOLC未检测到的耀斑。我们估计每个日历月至少需要80张MODIS图像才能创建混合算法的时间序列分析所需的良好参考图像。与MODVOLC相比,新算法性能的改善将导致对低温热异常的检测,这将有助于提高我们记录地球火山喷发的能力,以及检测较大规模喷发的低温热前兆。

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