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Spatially explicit characterization of boreal forest gap dynamics using multi-temporal lidar data

机译:利用多时相激光雷达数据对北方森林间隙动态进行空间显式表征

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Understanding a disturbance regime such as gap dynamics requires that we study its spatial and temporal characteristics. However, it is still difficult to observe and measure canopy gaps extensively in both space and time using field measurements or bi-dimensional remote sensing images, particularly in open and patchy boreal forests. In this study, we investigated the feasibility of using small footprint lidar to map boreal canopy gaps of sizes ranging from a few square meters to several hectares. Two co-registered canopy height models (CHMs) of optimal resolution were created from lidar datasets acquired respectively in 1998 and 2003. Canopy gaps were automatically delineated using an object-based technique with an accuracy of 96%. Further, combinatorics was applied on the two CHMs and the delineated gaps to provide information on the area of old and new gaps, gap expansions, new random gap openings, gap closure due to lateral growth of adjacent vegetation or due to vertical growth of regeneration. The results obtained establish lidar as an excellent tool for rapidly acquiring detailed and spatially extensive short-term dynamics of canopy gaps. (C) 2007 Elsevier Inc. All rights reserved.
机译:了解诸如间隙动力学之类的扰动状态需要我们研究其时空特征。但是,仍然难以使用野外测量或二维遥感图像在空间和时间上广泛地观察和测量冠层间隙,特别是在开阔和片状的北方森林中。在这项研究中,我们调查了使用小型足迹激光雷达绘制大小从几平方米到几公顷的北方冠层间隙的可行性。从分别于1998年和2003年获取的激光雷达数据集创建了两个具有最佳分辨率的共同注册的冠层高度模型(CHM)。使用基于对象的技术以96%的精度自动绘制冠层间隙。此外,在两个CHM和划定的间隙上应用了组合技术,以提供有关旧间隙和新间隙的面积,间隙扩展,新的随机间隙开口,由于相邻植被的横向生长或由于再生的垂直生长而造成的间隙闭合的信息。获得的结果使激光雷达成为快速获取冠层间隙的详细和空间广泛的短期动态的绝佳工具。 (C)2007 Elsevier Inc.保留所有权利。

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