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Large-Area, High-Resolution Tree Cover Mapping with Multi-Temporal SPOT5 Imagery, New South Wales, Australia

机译:带有多时间SPOT5影像的大面积,高分辨率树覆盖图,澳大利亚新南威尔士州

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Tree cover maps are used for many purposes, such as vegetation mapping, habitat connectivity and fragmentation studies. Small remnant patches of native vegetation are recognised as ecologically important, yet they are underestimated in remote sensing products derived from Landsat. High spatial resolution sensors are capable of mapping small patches of trees, but their use in large-area mapping has been limited. In this study, multi-temporal Satellite pour l’Observation de la Terre 5 (SPOT5) High Resolution Geometrical data was pan-sharpened to 5 m resolution and used to map tree cover for the Australian state of New South Wales (NSW), an area of over 800,000 km 2 . Complete coverages of SPOT5 panchromatic and multispectral data over NSW were acquired during four consecutive summers (2008–2011) for a total of 1256 images. After pre-processing, the imagery was used to model foliage projective cover (FPC), a measure of tree canopy density commonly used in Australia. The multi-temporal imagery, FPC models and 26,579 training pixels were used in a binomial logistic regression model to estimate the probability of each pixel containing trees. The probability images were classified into a binary map of tree cover using local thresholds, and then visually edited to reduce errors. The final tree map was then attributed with the mean FPC value from the multi-temporal imagery. Validation of the binary map based on visually assessed high resolution reference imagery revealed an overall accuracy of 88% (±0.51% standard error), while comparison against airborne lidar derived data also resulted in an overall accuracy of 88%. A preliminary assessment of the FPC map by comparing against 76 field measurements showed a very good agreement ( r 2 = 0.90) with a root mean square error of 8.57%, although this may not be representative due to the opportunistic sampling design. The map represents a regionally consistent and locally relevant record of tree cover for NSW, and is already widely used for natural resource management in the state.
机译:树木覆盖图可用于多种用途,例如植被测绘,栖息地连通性和破碎研究。少量的原生植被残留被认为具有重要的生态意义,但在Landsat衍生的遥感产品中却低估了它们。高空间分辨率传感器能够绘制树木的小块,但是它们在大面积地图中的使用受到限制。在这项研究中,将多时相卫星地球观测5号(SPOT5)高分辨率几何数据平整锐化为5 m分辨率,并用于绘制澳大利亚新南威尔士州(NSW)的树木覆盖图。面积超过80万公里2。在连续四个夏季(2008-2011年)期间,获得了新南威尔士州SPOT5全色和多光谱数据的完整覆盖,共获得1256张图像。经过预处理后,图像将用于模拟树叶投射覆盖物(FPC),这是澳大利亚常用的树冠密度度量。在二项式逻辑回归模型中使用了多时相影像,FPC模型和26,579个训练像素,以估计每个包含树木的像素的概率。使用局部阈值将概率图像分类为树的二元地图,然后进行可视化编辑以减少错误。然后,将最终树图归因于多时相影像的平均FPC值。根据视觉评估的高分辨率参考图像对二元地图进行的验证显示,整体精度为88%(标准误差为±0.51%),而与机载激光雷达衍生数据的比较也得出整体精度为88%。通过与76个现场测量结果进行比较,对FPC地图进行的初步评估显示出非常好的一致性(r 2 = 0.90),均方根误差为8.57%,尽管由于机会抽样设计而无法代表。该地图代表了新南威尔士州在区域上一致且与当地相关的树木记录,并且已在该州广泛用于自然资源管理。

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