Estimating Urban Tree Metrics Using Terrestrial LiDAR Scanning

IF 0.4 Q4 GEOGRAPHY
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引用次数: 0

Abstract

Trees grown in an urban environment are typically from a selected list of suitable species due to their appearance and other factors. A popular oak species in recent decades has been the Nuttall oak (Quercus texana). A total of seven Nuttall oaks were scanned using a terrestrial LiDAR scanner and modeled for comparison to manual measurements. These trees were then destructively sampled in place to measure their above-ground biomass. The biomass data were compiled and statistically compared against digital models of each tree that were created from the LiDAR scans. This resulted in a Pearson coefficient of .977 and linear regression R2 value of .99 for the LiDAR derived measurements predictive ability in comparison to the manually derived measurements. This indicates an ability of this ground based LiDAR model to predict both the linear dimensions and volumetrics of the standing specimens without the need for such labor intensive and expensive sampling given the sensitivity and value of urban forests.
利用地面激光雷达扫描估算城市树木指标
在城市环境中生长的树木通常是根据其外观和其他因素从合适的物种中挑选出来的。近几十年来,一个受欢迎的橡树物种是坚果橡树(德克萨斯栎)。使用地面激光雷达扫描仪扫描了总共七棵纳托尔橡树,并建立了模型,以便与人工测量进行比较。然后对这些树木进行破坏性采样,以测量它们的地上生物量。生物量数据被编译并与激光雷达扫描生成的每棵树的数字模型进行统计比较。与人工测量结果相比,激光雷达测量结果的预测能力的Pearson系数为0.977,线性回归R2值为0.99。这表明这种基于地面的激光雷达模型能够预测直立标本的线性尺寸和体积,而不需要这种劳动密集型和昂贵的采样,因为城市森林的敏感性和价值。
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来源期刊
CiteScore
1.20
自引率
0.00%
发文量
22
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