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Accuracy of fuzzy burned area mapping as a function of the aerosol parameterization of atmospheric correction

机译:模糊烧毁区域映射的精度作为大气校正气溶胶参数化的函数

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Mediterranean forests are every year affected by wildfires which have a significant effect on the ecosystem. Mapping burned areas is an important field of application for optical remote sensing techniques and several methodologies have been developed in order to improve mapping accuracy. We developed an automated procedure based on spectral indices and fuzzy theory for mapping burned areas from atmospherically corrected Landsat TM images. The algorithm proved to provide consistent accuracy over Mediterranean areas. We further tested algorithm's performance to assess the influence of the atmospheric correction on the accuracy of burned areas. In particular, we ran the Second Simulation of a Satellite Signal in the Solar Spectrum (6S) code with different Atmospheric Optical Thickness (AOT) levels and two aerosol models (continental and maritime) on one TM image acquired over Portugal (12/08/2003). Burned area maps derived from atmospherically corrected images and from the non corrected image (Top Of Atmosphere, TOA) have been analyzed. In the output burned areas maps the omission error varies in the range 4.6-6.5% and the commission error fluctuates between 11.9 and 22.2%; the highest omission (commission) errors occur with the continental (maritime) model. The accuracy of burned area maps derived from non corrected image is very low, with omission error greater than 90%. These results show that, although atmospheric correction is needed for the application of the algorithm, the AOT value does not significantly affect the performance.
机译:地中海森林每年受野火影响,对生态系统产生重大影响。映射烧毁区域是光学遥感技术的重要应用领域,并且已经开发了几种方法,以提高映射精度。我们开发了一种基于频谱指标的自动化程序和模糊理论,用于从大气校正的Landsat TM图像映射烧毁区域。该算法证明,在地中海区域提供一致的准确性。我们进一步测试了算法的性能,以评估大气校正对烧毁区域精度的影响。特别是,我们在太阳频谱(6S)码中的第二颗模拟在葡萄牙(12/08 /)上获取的一个TM图像上的不同大气光学厚度(AOT)水平和两个气溶胶模型(欧式和海上)(12/08 / 2003)。已经分析了从大气校正的图像和从非校正图像(大气层,TOA)源自来自大气校正的图像的烧坏区域地图。在输出烧毁区域地图中,省略误差在4.6-6.5%范围内变化,委员会误差波动11.9和22.2%;大陆(海上)模型发生的最高遗漏(委托)错误。源自未校正图像的烧坏区域映射的精度非常低,省略误差大于90%。这些结果表明,尽管需要大气校正来应用算法,但AOT值不会显着影响性能。

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