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Mapping Forest Height in Alaska Using GLAS, Landsat Composites, and Airborne LiDAR

机译:使用GLAS,Landsat Composites和机载LiDAR绘制阿拉斯加森林高度图

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Vegetation structure, including forest canopy height, is an important input variable to fire behavior modeling systems for simulating wildfire behavior. As such, forest canopy height is one of a nationwide suite of products generated by the LANDFIRE program. In the past, LANDFIRE has relied on a combination of field observations and Landsat imagery to develop existing vegetation structure products. The paucity of field data in the remote Alaskan forests has led to a very simple forest canopy height classification for the original LANDFIRE forest height map. To better meet the needs of data users and refine the map legend, LANDFIRE incorporated ICESat Geoscience Laser Altimeter System (GLAS) data into the updating process when developing the LANDFIRE 2010 product. The high latitude of this region enabled dense coverage of discrete GLAS samples, from which forest height was calculated. Different methods for deriving height from the GLAS waveform data were applied, including an attempt to correct for slope. These methods were then evaluated and integrated into the final map according to predefined criteria. The resulting map of forest canopy height includes more height classes than the original map, thereby better depicting the heterogeneity of the landscape, and provides seamless data for fire behavior analysts and other users of LANDFIRE data.
机译:植被结构,包括森林冠层高度,是模拟自然火灾行为的火灾行为建模系统的重要输入变量。因此,林冠高度是LANDFIRE程序生成的全国性产品套件之一。过去,LANDFIRE依靠野外观测和Landsat影像相结合来开发现有的植被结构产品。偏远的阿拉斯加森林中的现场数据很少,导致原始LANDFIRE森林高度图的森林冠层高度分类非常简单。为了更好地满足数据用户的需求并完善地图图例,LANDFIRE在开发LANDFIRE 2010产品时将ICESat地球科学激光测高仪系统(GLAS)数据纳入了更新过程。该地区的高纬度使得离散的GLAS样本能够被密集覆盖,从而可以计算出森林的高度。应用了从GLAS波形数据得出高度的不同方法,包括尝试校正斜率。然后根据预定义的标准对这些方法进行评估并整合到最终地图中。最终的森林冠层高度地图比原始地图包含更多的高度类别,从而更好地描绘了景观的异质性,并为火灾行为分析人员和LANDFIRE数据的其他用户提供了无缝数据。

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