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The use of terrestrial LiDAR technology in forest science: application fields, benefits and challenges

机译:地面激光雷达技术在森林科学中的应用:应用领域,优势和挑战

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Introduction The use of terrestrial LiDAR (light detection and ranging) scanners in forest environments is being studied extensively at present due to the high potential of this technology to acquire three-dimensional data on standing trees rapidly and accurately. This article aims to establish the state-of-the-art in this emerging area.Objectives Terrestrial LiDAR has been applied to forest inventory measurements (plot cartography, species recognition, diameter at breast height, tree height, stem density, basal area and plot-level wood volume estimates) and canopy characterisation (virtual projections, gap fraction and three-dimensional foliage distribution). These techniques have been extended to stand value and wood quality assessment. Terrestrial LiDAR also provides new support for ecological applications such as the assessment of the physical properties of leaves, transpiration processes and microhabitat diversity.Results Since 2003, both the capabilities of the devices and data processing technology have improved significantly, with encouraging results. Nevertheless, measurement patterns and device specifications must be selected carefully according to the objectives of the study. Moreover, automated and reliable programmes are still required to process data to make these methodologies applicable specifically to the forest sciences and to fill the gap between time-consuming manual methods and wide-scale remote sensing such as airborne LiDAR scanning.
机译:简介由于该技术具有巨大潜力,可以快速,准确地获取立木上的三维数据,因此目前正在广泛研究在森林环境中使用地面LiDAR(光检测和测距)扫描仪。本文旨在建立该新兴领域的最新技术。目的陆地激光雷达已应用于森林资源测量(绘图,制图,物种识别,胸高直径,树高,树高,茎密度,基础面积和绘图)。级木材体积估算)和树冠特征(虚拟投影,间隙分数和三维叶子分布)。这些技术已扩展到标准价值和木材质量评估。陆地LiDAR还为生态应用提供了新的支持,例如对叶片的物理特性,蒸腾过程和微生境多样性的评估。结果自2003年以来,设备的功能和数据处理技术均得到了显着改善,并取得了令人鼓舞的结果。但是,必须根据研究目的仔细选择测量模式和设备规格。此外,仍需要自动化和可靠的程序来处理数据,以使这些方法特别适用于森林科学,并填补耗时的手动方法与大规模遥感技术(例如机载LiDAR扫描)之间的空白。

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