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Automatic fire perimeter determination using MODIS hotspots information

机译:使用MODIS热点信息自动确定火区

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Every year wildfires are responsible of the loss of thousands of hactares of European forest, millions of dollars in damage and, in the worst case, for loss of human lives. Accurate observation of wildland fire evolution is a crucial issue to estimate the burned area, to use the observed data in propagation prediction and to calibrate input parameters of propagation models. In this direction the European Forest Fire Information System (EFFIS) supports the services in charge of the protection of European forests. Satellite images provide useful information, but, in many cases, the clouds or the fire smoke itself do not allow to have a good estimation of the fire front position. So, a methodology based on thermal anomalies information has been applied to estimate fire perimeters even on adverse conditions. This methodology has been recently added to EFFIS to determine the perimeter evolution of a wildfire using thermal anomalies information coming from NASA's satellites. In this paper we describe the algorithm to perform this task and how it was implemented and integrated into the EFFIS services.
机译:每年,森林大火都会造成数千公顷的欧洲森林损失,数百万美元的损失,甚至在最坏的情况下,还会造成人员伤亡。准确观察野火演变是评估燃烧面积,将观测数据用于传播预测和校准传播模型输入参数的关键问题。在这个方向上,欧洲森林火灾信息系统(EFFIS)支持负责保护欧洲森林的服务。卫星图像可提供有用的信息,但是在许多情况下,云或火烟本身无法很好地估计火锋位置。因此,即使在不利条件下,也已应用基于热异常信息的方法来估计火力周长。最近,此方法已添加到EFFIS中,以使用来自NASA卫星的热异常信息来确定野火的周长演变。在本文中,我们描述了执行此任务的算法,以及如何实现该算法并将其集成到EFFIS服务中。

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