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Effect of size and number of calibration plots on the estimation of stem diameter distributions using airborne laser scanning

机译:校准图的大小和数量对机载激光扫描估算杆直径分布的影响

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Stem diameter distribution is a crucial forest inventory variable in operational forest management. Compared to ground based forest mensuration (e.g., diameter at breast height (DBH)), airborne laser scanning (ALS) offers a cost effective alternative for modelling forest inventory variables. The objective of this study is to determine the impact of the size and number of sample plots on modelling diameter distributions in an unevenaged tolerant hardwood forest using discrete return ALS data. With the size of the sample plots ranging from 0.04 to 0.25 ha, DBH distributions were divided into six structural classes, estimated by two categories of non-parametric methods: k-nearest neighbor (k-NN) imputation and the random forest (RF). Sensitivity analysis demonstrated that the size of sample plots has a stronger impact on model performance than the number of plots. In addition, RF was found to be the most accurate model, regardless of the size and number of sample plots.
机译:茎直径分布是运营森林管理中的一个关键森林库存变量。与基于地面的森林敏感(例如,乳房高度(DBH)的直径)相比,机载激光扫描(ALS)为建模森林库存变量进行了成本有效的替代方案。本研究的目的是确定使用离散返回ALS数据的不均衡耐受硬木林中模拟直径分布对模拟直径分布的影响。随着0.04至0.25公顷的样品图的尺寸,DBH分布分为六个结构类,由两类非参数方法估计:K-最近邻(K-NN)贫地和随机林(RF) 。敏感性分析表明,样品图的尺寸对模型性能的影响比图数更强。此外,无论样本图的大小和数量如何,都发现RF是最准确的模型。

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